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3GPP Long Term Evolution (LTE) Overview
Coursework
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3GPP Long Term Evolution News - Verizon Wireless, MetroPCS, T-Mobile
Nokia Lumia 928 with metal casing rumored for April debut on Verizon
Verizon Wireless (VZ) will reportedly finally launch its version of Nokia's (NOK) latest flagship smartphone next month. The Lumia 928 will feature specs that are very similar to the Lumia 920, however it will include an aluminum case and a xenon flash in addition to the standard LED flash, The Verge's anonymous sources claim. Th
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3GPP LTE Evolved Packet System & Application to Femtos
Abstract: The Evolved Packet System (EPS) comprises the Long-Term Evolution (LTE) specifications of the 3GPP mobile network standard, including evolved radio access network (E-UTRAN) and system architecture evolution (SAE). This talk provides an overview of the 3GPP mobile network evolution, including the following topics: from GSM over UMTS to LTE and LTE-Advanced: the roots of next generation mo
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3GPP LTE ( Long Term Evolution) and its Security Infrastructure
LTE, an initialism of long-term evolution, marketed as 4G LTE, is a standard for wireless communication of high-speed data for mobile phones and data terminals. It is based on the GSM/EDGE and UMTS/HSPA network technologies, increasing the capacity and speed using a different radio interface together with core network improvements.The standard is developed by the 3GPP (3rd Generation Partnership P
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3GPP Long Term Evolution High impact Technology What You Need to Know Definitions Adoptions Im
https://store.theartofservice.com/3gpp-long-term-evolution-high-impact-technology-what-you-need-to-know-definitions-adoptions-impact-benefits-maturity-vendors.html
In easy to read chapters, with extensive references and links to get you to know all there is to know about 3GPP Long Term Evolution right away, covering: 3GPP Long Term Evolution, 3GPP, A5/1, Access Point Name, BSSGP, Cell Broadcast, C
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LTE Architecture
LTE Architecture from 3GPP's website
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LTE and the Evolution to LTE Advanced Fundamentals Part One
This webcast will provide the basics of LTE technology. We will cover requirements, key specifications, and the latest deployment information. We will discuss air interface concepts including OFDM and SC-FDMA, review the block diagram of a transceiver, and the fundamentals of receiver and transmitter test.
Get resources on 3GPP LTE and other wireless technologies synthesis from Keysight.
www.key
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LTE Microwave and X-Ray weapons now available by your Cell Phone - radiation SHOW (English)
LTE in Wikipedia:
3GPP Long Term Evolution, usually referred to as LTE, is a standard for wireless communication of high-speed data for mobile phones and data terminals. It is based on the GSM/EDGE and UMTS/HSPA network technologies, increasing the capacity and speed using new modulation techniques. The standard is developed by the 3GPP (3rd Generation Partnership Project).
The world's first
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Hitler upset for LTE does not have CS domain
Hitler finds out that 3GPP dropped the CS domain from LTE specifications ..
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Long Term Evolution projects | Network simulator2 projects
Long Term Evolution projects LTE (Long Term Evolution) is a very good, easily deployable network technology, offering high speeds and low latencies over long distances. http://www.networksimulator2.com
Reasons for inviting LTE technology:
• Need to ensure the continuity of competitiveness of the 3G system for the future
• User demand for higher data rates and quality of service
• Packet Switch o
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Samsung Galaxy Tab 10.1 LTE / 4G
(Uploaded via 4G) So HSPA+ also known as LTE (Long Term Evolution) can provide data rates in theory to 84mbit/s 22Mbit/s HSPA+ is a major step along the lines of the 3GPP Long Evolution as definded in the 3GPP release notes REL8. So, this tablet is running Hipernet 21 from Telenor with 21mbit and 2mbit upload speed and here you can see the tests so far, although further from central Budapest and
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LG LTE Live Air Demo (MWC 2009)
LG is to demonstrate the world's first data card based on 3GPP Long Term Evolution (LTE) technology standards at Mobile World Congress 2009 in Barcelona. Data card uses LG's own modem chip solution.
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LG : Worlds First LTE Handset Modem Chip
LG independently developed the first handset (user equipment) modem chip based on 3GPP Long Term Evolution (LTE)* technology standards. Check this clip to know more of it. Visit http://www.lge.com/index.jhtml for more information !!!
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LG LTE Live Air Demo (Barcelona)
LG Electronics (LG), a worldwide technology and design leader in mobile communications, announced that it will demonstrate the first data card based on 3GPP Long Term Evolution (LTE) technology standards during the GSMA Mobile World Congress 2009.
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One global standard
The worlds leading telecom operators are committing to 3GPP Long Term Evolution (LTE) as they advance toward the next generation of mobile networks. Listen to what Håkan Eriksson, Chief Technology Officer at Ericsson, has to say about LTE, the first global standard for mobile communication.
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Tech Talk: LTE Release 12 and beyond
Discover more of our technology insights: http://www.ericsson.com/thinkingahead/technology_insights
In this new Tech Talk, Maria Edvardsson from Ericsson Research looks at the evolution of LTE and describes six of the technical areas that we believe in for the evolution of LTE.
This Tech Talk is about the evolution of LTE. The first release of LTE was finalized in 2008 and one year later the fir
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Module 4 - 4G LTE & EPC Network Architecture
This module describes the network architects for 2G, 3G and 4G Mobile Networks. The main focus in on LTE/EPC Network Architecture.
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Два защищенных планшета от Panasonic A1 и B1
Первый аппарат под индексом A1 имеет 10-дюймовый дисплей с антибликовым покрытием, разрешением 1024 х 768, двухъядерный 1,2 ГГц процессор Marvell, и 16 Гб встроенной памяти, которую можно расширить с помощью карты MicroSD. Вес аппарата чуть менее килограмма. Аппарат будет оснащаться модулем LTE (3GPP Long Term Evolution) или WiMAX на выбор. Операционная система Android 3.0. Время автономной работы
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The iPhone 4
The iPhone 4 and the 4G (4th Generation) Network, are also known as 3GPP Long Term Evolution (LTE), is the latest standard in the mobile network. WiMAX vs. LTE vs. HSPA+ either way they are all part of UMTS, (Universal Mobile Telephone System)
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Multiuser Scheduling in the 3GPP LTE Cellular Uplink
ECWAY TECHNOLOGIES @ IEEE EMBEDDED PROJECTS
ECWAY TECHNOLOGIES @ IEEE MECHANICAL PROJECTS
ECWAY TECHNOLOGIES @ IEEE VLSI PROJECTS
ECWAY TECHNOLOGIES @ IEEE ROBTICS PROJECTS
ECWAY TECHNOLOGIES @ IEEE POWER ELECTRONICS PROJECTS
ECWAY TECHNOLOGIES @ IEEE JAVA PROJECTS
ECWAY TECHNOLOGIES @ IEEE .NET PROJECTS
ECWAY TECHNOLOGIES @ IEEE NS2 PROJECTS
ECWAY TECHNOLOGIES @ IEEE MATLAB PROJECTS
ECWAY TECHNOL
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Lte Projects | LTE | LTE Tutorial | 2015 LTE Projects
Long Term Evolution (LTE projects) is a 4G wireless broadband technology developed by the Third Generation Partnership Project (3GPP), that's designed to provide up to 10x the speeds of 3G networks for mobile devices such as smartphones,tablets, netbooks, notebooks and wireless hotspots.
https://academiccollegeprojects.com/lte-projects/
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LTE and the Evolution to LTE Advanced Fundamentals Part Two
This webcast will start by covering the basics of MIMO. We will then discuss the fundamentals of LTE-Advanced including the main features of Release 10, carrier aggregation, clustered SC-FDMA and more. We will conclude with test requirements of these key areas.
Get resources on 3GPP LTE and other wireless technologies synthesis from Keysight
www.keysight.com/find/LTE-forward
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Security Analysis of Handover Key Management in 4G LTESAE Networks |IEEE |IEEE projects
The goal of 3GPP Long Term Evolution/System Architecture Evolution (LTE/SAE) is to move mobile cellular wireless technology into its fourth generation. One of the unique challenges of fourth-generation technology is how to close a security gap through which a single compromised or malicious device can jeopardize an entire mobile network because of the open nature of these networks. To meet this ch
3GPP Long Term Evolution News - Verizon Wireless, MetroPCS, T-Mobile
Nokia Lumia 928 with metal casing rumored for April debut on Verizon
Verizon Wireless (VZ) will reportedly finally launch its version of Nokia's (NOK) latest fl...
Nokia Lumia 928 with metal casing rumored for April debut on Verizon
Verizon Wireless (VZ) will reportedly finally launch its version of Nokia's (NOK) latest flagship smartphone next month. The Lumia 928 will feature specs that are very similar to the Lumia 920, however it will include an aluminum case and a xenon flash in addition to the standard LED flash, The Verge's anonymous sources claim. The handset is also rumored to feature support for simultaneous voice and data on Verizon's LTE network.
http://news.yahoo.com/nokia-lumia-928-metal-casing-rumored-april-debut-163527155.html
T-Mobile Planning Job Cuts Ahead of MetroPCS Deal Closure
T-Mobile isn't officially confirming the timing or scope of the cuts, which are said to be imminent.
http://allthingsd.com/20130306/t-mobile-expected-to-cut-jobs-ahead-of-metropcs-deal-closure/
T-Mobile Shouts Back at AT&T; While its Network Team Quietly Builds Away
Even as it launches new ads attacking AT&T;, the real work at T-Mobile is building a network that can compete for the long term.
http://allthingsd.com/20130306/t-mobile-shouts-back-at-att-while-its-network-team-quietly-builds-away/
http://www.wochit.com
wn.com/3Gpp Long Term Evolution News Verizon Wireless, Metropcs, T Mobile
Nokia Lumia 928 with metal casing rumored for April debut on Verizon
Verizon Wireless (VZ) will reportedly finally launch its version of Nokia's (NOK) latest flagship smartphone next month. The Lumia 928 will feature specs that are very similar to the Lumia 920, however it will include an aluminum case and a xenon flash in addition to the standard LED flash, The Verge's anonymous sources claim. The handset is also rumored to feature support for simultaneous voice and data on Verizon's LTE network.
http://news.yahoo.com/nokia-lumia-928-metal-casing-rumored-april-debut-163527155.html
T-Mobile Planning Job Cuts Ahead of MetroPCS Deal Closure
T-Mobile isn't officially confirming the timing or scope of the cuts, which are said to be imminent.
http://allthingsd.com/20130306/t-mobile-expected-to-cut-jobs-ahead-of-metropcs-deal-closure/
T-Mobile Shouts Back at AT&T; While its Network Team Quietly Builds Away
Even as it launches new ads attacking AT&T;, the real work at T-Mobile is building a network that can compete for the long term.
http://allthingsd.com/20130306/t-mobile-shouts-back-at-att-while-its-network-team-quietly-builds-away/
http://www.wochit.com
- published: 12 Mar 2013
- views: 203
3GPP LTE Evolved Packet System & Application to Femtos
Abstract: The Evolved Packet System (EPS) comprises the Long-Term Evolution (LTE) specifications of the 3GPP mobile network standard, including evolved radio ac...
Abstract: The Evolved Packet System (EPS) comprises the Long-Term Evolution (LTE) specifications of the 3GPP mobile network standard, including evolved radio access network (E-UTRAN) and system architecture evolution (SAE). This talk provides an overview of the 3GPP mobile network evolution, including the following topics: from GSM over UMTS to LTE and LTE-Advanced: the roots of next generation mobile network standards; 3GPP standardization architecture: specification groups and their responsibilities; overview of the LTE/SAE system architecture; quality of service architecture; overview of E-UTRAN; outlook on LTE-Advanced and beyond; and, of course, femtocells in LTE. These general LTE-related topics as well as the specific femtocell architectural issues will pave the way for the subsequent technical presentations during the remainder of the week.
Biography: Dr. Andreas Maeder received his Ph.D. in 2008 at the University of Wuerzburg, Germany. The topic of his Ph.D. thesis was on radio resource management in integrated 3GPP UMTS/HSPA systems. Since 2008, he is affiliated with NEC Laboratories Europe, where he is working on next generation mobile networks, including LTE, LTE-Advanced, IEEE 802.16m, machine-to-machine communication, and Femtocells. He is involved in EU-projects FLAVIA and BeFEMTO, and in standardization of IEEE 802.16, FemtoForum and 3GPP. He is author of numerous publications in conferences, journals and book chapters, as well as patent applications.
wn.com/3Gpp Lte Evolved Packet System Application To Femtos
Abstract: The Evolved Packet System (EPS) comprises the Long-Term Evolution (LTE) specifications of the 3GPP mobile network standard, including evolved radio access network (E-UTRAN) and system architecture evolution (SAE). This talk provides an overview of the 3GPP mobile network evolution, including the following topics: from GSM over UMTS to LTE and LTE-Advanced: the roots of next generation mobile network standards; 3GPP standardization architecture: specification groups and their responsibilities; overview of the LTE/SAE system architecture; quality of service architecture; overview of E-UTRAN; outlook on LTE-Advanced and beyond; and, of course, femtocells in LTE. These general LTE-related topics as well as the specific femtocell architectural issues will pave the way for the subsequent technical presentations during the remainder of the week.
Biography: Dr. Andreas Maeder received his Ph.D. in 2008 at the University of Wuerzburg, Germany. The topic of his Ph.D. thesis was on radio resource management in integrated 3GPP UMTS/HSPA systems. Since 2008, he is affiliated with NEC Laboratories Europe, where he is working on next generation mobile networks, including LTE, LTE-Advanced, IEEE 802.16m, machine-to-machine communication, and Femtocells. He is involved in EU-projects FLAVIA and BeFEMTO, and in standardization of IEEE 802.16, FemtoForum and 3GPP. He is author of numerous publications in conferences, journals and book chapters, as well as patent applications.
- published: 17 Feb 2012
- views: 26365
3GPP LTE ( Long Term Evolution) and its Security Infrastructure
LTE, an initialism of long-term evolution, marketed as 4G LTE, is a standard for wireless communication of high-speed data for mobile phones and data terminals....
LTE, an initialism of long-term evolution, marketed as 4G LTE, is a standard for wireless communication of high-speed data for mobile phones and data terminals. It is based on the GSM/EDGE and UMTS/HSPA network technologies, increasing the capacity and speed using a different radio interface together with core network improvements.The standard is developed by the 3GPP (3rd Generation Partnership Project) and is specified in its Release 8 document series, with minor enhancements described in Release 9.
wn.com/3Gpp Lte ( Long Term Evolution) And Its Security Infrastructure
LTE, an initialism of long-term evolution, marketed as 4G LTE, is a standard for wireless communication of high-speed data for mobile phones and data terminals. It is based on the GSM/EDGE and UMTS/HSPA network technologies, increasing the capacity and speed using a different radio interface together with core network improvements.The standard is developed by the 3GPP (3rd Generation Partnership Project) and is specified in its Release 8 document series, with minor enhancements described in Release 9.
- published: 03 Jan 2013
- views: 1330
3GPP Long Term Evolution High impact Technology What You Need to Know Definitions Adoptions Im
https://store.theartofservice.com/3gpp-long-term-evolution-high-impact-technology-what-you-need-to-know-definitions-adoptions-impact-benefits-maturity-vendors.h...
https://store.theartofservice.com/3gpp-long-term-evolution-high-impact-technology-what-you-need-to-know-definitions-adoptions-impact-benefits-maturity-vendors.html
In easy to read chapters, with extensive references and links to get you to know all there is to know about 3GPP Long Term Evolution right away, covering: 3GPP Long Term Evolution, 3GPP, A5/1, Access Point Name, BSSGP, Cell Broadcast, Charging data record, Closed subscriber group, CSN.1, DC-HSUPA, Dual-Cell HSDPA, E-UTRA, EUTRAN, Evolved HSPA, Flat IP, Frame Protocol, General Packet Radio Service, Generic Access Network, Generic Authentication Architecture, GPRS Core Network, GPRS Roaming Exchange, GSM codes for supplementary services, GSM procedures, GTP', Insert Subscriber Data, Integration Reference Point, IP Multimedia Services Identity Module, IP Multimedia Subsystem, LTE Advanced, MMS Architecture, Mobile station, Multimedia Messaging Service, NBAP, Network Service Access Point Identifier, Node B, Online charging system, Opportunity Driven Multiple Access, PDCP, Radio Network Controller, Received signal code power, Self-Optimization, SIM Application Toolkit, SMS, TD-SCDMA, Timing advance, UICC, UMTS-FDD, UMTS-TDD, Universal Mobile Telecommunications System, Unstructured Supplementary Service Data, User equipment, USIM Application Toolkit, USSD Gateway, VoLGA Forum, Access Network Discovery and Selection Function, Common control physical channel, Common pilot channel, DPCCH, DPDCH, DSCH (Downlink Shared Channel), High-Speed Downlink Packet Access, High-Speed Uplink Packet Access, List of HSPA+ networks, List of HSDPA networks, List of HSUPA networks, Open Services Architecture, Super-Charged network, System Architecture Evolution, UMTS Forum, List of UMTS networks, UMTS security, UTRA-TDD HCR, UTRA-TDD LCR.
wn.com/3Gpp Long Term Evolution High Impact Technology What You Need To Know Definitions Adoptions Im
https://store.theartofservice.com/3gpp-long-term-evolution-high-impact-technology-what-you-need-to-know-definitions-adoptions-impact-benefits-maturity-vendors.html
In easy to read chapters, with extensive references and links to get you to know all there is to know about 3GPP Long Term Evolution right away, covering: 3GPP Long Term Evolution, 3GPP, A5/1, Access Point Name, BSSGP, Cell Broadcast, Charging data record, Closed subscriber group, CSN.1, DC-HSUPA, Dual-Cell HSDPA, E-UTRA, EUTRAN, Evolved HSPA, Flat IP, Frame Protocol, General Packet Radio Service, Generic Access Network, Generic Authentication Architecture, GPRS Core Network, GPRS Roaming Exchange, GSM codes for supplementary services, GSM procedures, GTP', Insert Subscriber Data, Integration Reference Point, IP Multimedia Services Identity Module, IP Multimedia Subsystem, LTE Advanced, MMS Architecture, Mobile station, Multimedia Messaging Service, NBAP, Network Service Access Point Identifier, Node B, Online charging system, Opportunity Driven Multiple Access, PDCP, Radio Network Controller, Received signal code power, Self-Optimization, SIM Application Toolkit, SMS, TD-SCDMA, Timing advance, UICC, UMTS-FDD, UMTS-TDD, Universal Mobile Telecommunications System, Unstructured Supplementary Service Data, User equipment, USIM Application Toolkit, USSD Gateway, VoLGA Forum, Access Network Discovery and Selection Function, Common control physical channel, Common pilot channel, DPCCH, DPDCH, DSCH (Downlink Shared Channel), High-Speed Downlink Packet Access, High-Speed Uplink Packet Access, List of HSPA+ networks, List of HSDPA networks, List of HSUPA networks, Open Services Architecture, Super-Charged network, System Architecture Evolution, UMTS Forum, List of UMTS networks, UMTS security, UTRA-TDD HCR, UTRA-TDD LCR.
- published: 28 Jan 2015
- views: 136
LTE Architecture
LTE Architecture from 3GPP's website...
LTE Architecture from 3GPP's website
wn.com/Lte Architecture
LTE Architecture from 3GPP's website
- published: 16 Feb 2015
- views: 421
LTE and the Evolution to LTE Advanced Fundamentals Part One
This webcast will provide the basics of LTE technology. We will cover requirements, key specifications, and the latest deployment information. We will discuss a...
This webcast will provide the basics of LTE technology. We will cover requirements, key specifications, and the latest deployment information. We will discuss air interface concepts including OFDM and SC-FDMA, review the block diagram of a transceiver, and the fundamentals of receiver and transmitter test.
Get resources on 3GPP LTE and other wireless technologies synthesis from Keysight.
www.keysight.com/find/LTE-forward
wn.com/Lte And The Evolution To Lte Advanced Fundamentals Part One
This webcast will provide the basics of LTE technology. We will cover requirements, key specifications, and the latest deployment information. We will discuss air interface concepts including OFDM and SC-FDMA, review the block diagram of a transceiver, and the fundamentals of receiver and transmitter test.
Get resources on 3GPP LTE and other wireless technologies synthesis from Keysight.
www.keysight.com/find/LTE-forward
- published: 02 Aug 2014
- views: 14060
LTE Microwave and X-Ray weapons now available by your Cell Phone - radiation SHOW (English)
LTE in Wikipedia:
3GPP Long Term Evolution, usually referred to as LTE, is a standard for wireless communication of high-speed data for mobile phones and dat...
LTE in Wikipedia:
3GPP Long Term Evolution, usually referred to as LTE, is a standard for wireless communication of high-speed data for mobile phones and data terminals. It is based on the GSM/EDGE and UMTS/HSPA network technologies, increasing the capacity and speed using new modulation techniques. The standard is developed by the 3GPP (3rd Generation Partnership Project).
The world's first publicly available LTE service was launched by TeliaSonera in the Scandinavian capitals Stockholm and Oslo on 14 December 2009. LTE is the natural upgrade path for carriers with GSM/UMTS networks, but even CDMA holdouts such as Verizon in North America and au by KDDI in Japan have announced that they will migrate to LTE in the future. LTE is therefore anticipated to become the first truly global mobile phone standard.
Although commonly referred to as a type of 4G wireless service, LTE release 8 currently in use does not satisfy the requirements set forth by the ITU-R organization. Future releases of LTE (referred to as LTE Advanced) are expected to satisfy the requirements to be considered 4G.
Nobody knows the danger of these cell phone masts. They spread microwaves and X-Rays to control you in the FUTURE. Breathe the Chemtrail air and get Alzheimer disease and brain tumors.
Please keep the cell phone from your body and your ear. Wear magnets for your own health. We are surrounded by radiation all over the day. That's why I call it: 1st radiation SHOW. (UN-) Happy New Year everybody..... :-(
Here is an information-link about this subject matter:
http://www.petition-electrosmog.be/esmog.php?l=en
The lyrics of White Zombie's Electric Head pt. 2 remix (composer: John Tempesta) from the Super Sexy Swingin' Sounds album:
Yeah, I want it.
Yeah, I want it.
Yeah, I want it.
Yeah, electric head in your head
in your head, in you
Strip down core violate and paralyze
Flood my soul, a coffee dreg, supersize
Slung low like a whore, devil want some more
Cupid bought a gun, he gonna blow the fucker
Yeah, I want it.
Yeah, I want it.
Yeah, I want it.
Yeah, electric head in your head
in your head, in you
Breakneck speed get a violent spinal crack'n
Back down to the chrome and feel the death wish attack'n
Hubcaps on your eyes, cannot sympathize
A fistful of hair and a splinter in the mind
Yeah, I want it.
Yeah, I want it.
Yeah, I want it.
Yeah, electric head in your head
in your head, in you
Too far gone, see the freak apologize
Flood my soul a coffee dreg, supersize
Slung low like a whore, devil want some more
Cupid bought a gun, he gonna blow the fucker
Yeah, I want it.
Yeah, I want it.
Yeah, I want it.
Yeah, electric head in your head
in your head, in you
~Project infopowerment Truthers Alliance~
Creating New kind of Unity against Tyranny
Network of independent Thinkers Rebels dissidents activists artists writers researchers rappers web-masters talkshow-hosts video-editors protesters conference-organizers lecturers musicians deejays all eXposing & dismantling NWO Mafia Tyranny in their own unique way
~founder EXOMATRlXTV
Appreciating DIFFERENT angles & tactics Being different is not a "crime" staying in your own integrity being appreciated for your talents. We do not have to agree on everything, as long as we do not impose or hijacking other channels to force 1 issue or 1 group demonizing & generalizing. We need a different kind of unity against tyranny. We can inspire & motivate each other in so many ways KEY is allowing each-other 2b different as complementary forces helping the network
~ http://infopowerment.whynot... ~feeds works with FireFox or Opera
~SUBSCRIBE OUR NETWORK~
0garry555 2minstral 911TruthPusher AdonisKingAXC AlienScientist Alkhemisis AllSeeingGuy Babylongone BarbarianRebellion BCTheTruthSeeker Believersunderground BIGckEK BunkerTelevision Chemlin Celebs4Truth CelestialHeretic Danbowski40 dogsofwarclan Pleasure's Denizzz123 DjHardcoreTruth DrUK2008 Eredy Ethogenic EXOMATRlXTV Exthema EyezOpenWide F33DTH3F1R3F1LM5 FreemanTV HorseofPaulRevere Hydroslide62 infopowerment JohnKuhles Interstitial KerstinMonika2 Khaadimone Killuminati331 LightWarrior2 LiveFreeRevolution Mindinflow Misstorys MrGlasgowTruther4U Mrdrofdel Ms4278 Nibirushock No2Facism OrdinaryGomez2 PESNetwork Product72749 Rainbowdom1 Saorsa64 Seattle4Truth SENTIENTMIND SetY0UFreee SheepleCorporation Standup4America1 SteveTrinity Setheren StegalXX StevePhillips11 Sundrumify TheDutchDatabase TheGlobalAgenda TheMuschinski TheRealTruthHunter ThisVigilantGuardian Truther33 Truthspeaker74 UrbanWarfareChannel UrthNet WakeUpCallConference WarCrime911 WaywardeuSE Women4Truth YawehKing
no need2follow anyone, only consider
broaden (y)our horizon of possibilities
wn.com/Lte Microwave And X Ray Weapons Now Available By Your Cell Phone Radiation Show (English)
LTE in Wikipedia:
3GPP Long Term Evolution, usually referred to as LTE, is a standard for wireless communication of high-speed data for mobile phones and data terminals. It is based on the GSM/EDGE and UMTS/HSPA network technologies, increasing the capacity and speed using new modulation techniques. The standard is developed by the 3GPP (3rd Generation Partnership Project).
The world's first publicly available LTE service was launched by TeliaSonera in the Scandinavian capitals Stockholm and Oslo on 14 December 2009. LTE is the natural upgrade path for carriers with GSM/UMTS networks, but even CDMA holdouts such as Verizon in North America and au by KDDI in Japan have announced that they will migrate to LTE in the future. LTE is therefore anticipated to become the first truly global mobile phone standard.
Although commonly referred to as a type of 4G wireless service, LTE release 8 currently in use does not satisfy the requirements set forth by the ITU-R organization. Future releases of LTE (referred to as LTE Advanced) are expected to satisfy the requirements to be considered 4G.
Nobody knows the danger of these cell phone masts. They spread microwaves and X-Rays to control you in the FUTURE. Breathe the Chemtrail air and get Alzheimer disease and brain tumors.
Please keep the cell phone from your body and your ear. Wear magnets for your own health. We are surrounded by radiation all over the day. That's why I call it: 1st radiation SHOW. (UN-) Happy New Year everybody..... :-(
Here is an information-link about this subject matter:
http://www.petition-electrosmog.be/esmog.php?l=en
The lyrics of White Zombie's Electric Head pt. 2 remix (composer: John Tempesta) from the Super Sexy Swingin' Sounds album:
Yeah, I want it.
Yeah, I want it.
Yeah, I want it.
Yeah, electric head in your head
in your head, in you
Strip down core violate and paralyze
Flood my soul, a coffee dreg, supersize
Slung low like a whore, devil want some more
Cupid bought a gun, he gonna blow the fucker
Yeah, I want it.
Yeah, I want it.
Yeah, I want it.
Yeah, electric head in your head
in your head, in you
Breakneck speed get a violent spinal crack'n
Back down to the chrome and feel the death wish attack'n
Hubcaps on your eyes, cannot sympathize
A fistful of hair and a splinter in the mind
Yeah, I want it.
Yeah, I want it.
Yeah, I want it.
Yeah, electric head in your head
in your head, in you
Too far gone, see the freak apologize
Flood my soul a coffee dreg, supersize
Slung low like a whore, devil want some more
Cupid bought a gun, he gonna blow the fucker
Yeah, I want it.
Yeah, I want it.
Yeah, I want it.
Yeah, electric head in your head
in your head, in you
~Project infopowerment Truthers Alliance~
Creating New kind of Unity against Tyranny
Network of independent Thinkers Rebels dissidents activists artists writers researchers rappers web-masters talkshow-hosts video-editors protesters conference-organizers lecturers musicians deejays all eXposing & dismantling NWO Mafia Tyranny in their own unique way
~founder EXOMATRlXTV
Appreciating DIFFERENT angles & tactics Being different is not a "crime" staying in your own integrity being appreciated for your talents. We do not have to agree on everything, as long as we do not impose or hijacking other channels to force 1 issue or 1 group demonizing & generalizing. We need a different kind of unity against tyranny. We can inspire & motivate each other in so many ways KEY is allowing each-other 2b different as complementary forces helping the network
~ http://infopowerment.whynot... ~feeds works with FireFox or Opera
~SUBSCRIBE OUR NETWORK~
0garry555 2minstral 911TruthPusher AdonisKingAXC AlienScientist Alkhemisis AllSeeingGuy Babylongone BarbarianRebellion BCTheTruthSeeker Believersunderground BIGckEK BunkerTelevision Chemlin Celebs4Truth CelestialHeretic Danbowski40 dogsofwarclan Pleasure's Denizzz123 DjHardcoreTruth DrUK2008 Eredy Ethogenic EXOMATRlXTV Exthema EyezOpenWide F33DTH3F1R3F1LM5 FreemanTV HorseofPaulRevere Hydroslide62 infopowerment JohnKuhles Interstitial KerstinMonika2 Khaadimone Killuminati331 LightWarrior2 LiveFreeRevolution Mindinflow Misstorys MrGlasgowTruther4U Mrdrofdel Ms4278 Nibirushock No2Facism OrdinaryGomez2 PESNetwork Product72749 Rainbowdom1 Saorsa64 Seattle4Truth SENTIENTMIND SetY0UFreee SheepleCorporation Standup4America1 SteveTrinity Setheren StegalXX StevePhillips11 Sundrumify TheDutchDatabase TheGlobalAgenda TheMuschinski TheRealTruthHunter ThisVigilantGuardian Truther33 Truthspeaker74 UrbanWarfareChannel UrthNet WakeUpCallConference WarCrime911 WaywardeuSE Women4Truth YawehKing
no need2follow anyone, only consider
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- published: 01 Jan 2012
- views: 3118
Hitler upset for LTE does not have CS domain
Hitler finds out that 3GPP dropped the CS domain from LTE specifications .....
Hitler finds out that 3GPP dropped the CS domain from LTE specifications ..
wn.com/Hitler Upset For Lte Does Not Have Cs Domain
Hitler finds out that 3GPP dropped the CS domain from LTE specifications ..
- published: 17 Nov 2009
- views: 60094
Long Term Evolution projects | Network simulator2 projects
Long Term Evolution projects LTE (Long Term Evolution) is a very good, easily deployable network technology, offering high speeds and low latencies over long di...
Long Term Evolution projects LTE (Long Term Evolution) is a very good, easily deployable network technology, offering high speeds and low latencies over long distances. http://www.networksimulator2.com
Reasons for inviting LTE technology:
• Need to ensure the continuity of competitiveness of the 3G system for the future
• User demand for higher data rates and quality of service
• Packet Switch optimized system
• Continued demand for cost reduction (CAPEX and OPEX)
• Low complexity
• Avoid unnecessary fragmentation of technologies for paired and unpaired band operation
Concepts involved in LTE are as follows:
• Gain high spectral efficiency
• High peak data rates
• Short round trip time as well as flexibility in frequency and bandwidth.
• For supporting higher speed mobility
• Packet scheduling
• interference management
• handover control
• OFDM & various MIMO enhancement
• Channel/carrier aggregation
• RN (Multi-hop Transmission)
• CoMP (Multi-cell cooperation Tx/Rx)
• Densification (small cell solution )
• Interference management in heterogeneous cell overly etc.
4G LTE is a standard for wireless communication of high-speed data for mobile phones and data terminals.
Long Term Evolution (LTE) is a 4G wireless broadband technology developed by the Third Generation Partnership Project (3GPP)
LTE (Long Term Evolution) is a wireless broadband technology designed to support roaming Internet access via cell phones and handheld devices.
LTE can theoretically support downloads at 300 Megabits per second (Mbps)
Subscribe us
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Vimeo:https://vimeo.com/networksimulator2project/videos
Dailymotion:http://www.dailymotion.com/networksimulator2projectteam
visit us :http://networksimulator2.com/
NS2 PROJECTS---------------http://networksimulator2.com/ns2-projects/
NS2 ATTACK----------------http://networksimulator2.com/ns2-attack/
NS2 WORMHOLE ATTACK---------http://networksimulator2.com/ns2-wormhole-attack/
NS2 DDOS ATTACK----------http://networksimulator2.com/ns2-ddos-attack/
NS2 SIMULATION PROJECTS---------http://networksimulator2.com/ns2-simulation-projects/
NS2 WIRELESS PROJECTS-----------http://networksimulator2.com/ns2-wireless-projects/
WIRELESS COMMUNICATION NS2 PROJECTS----------http://networksimulator2.com/wireless-communication-ns2-projects/
WIRELESS NETWORK SIMULATION IN NS2------------http://networksimulator2.com/wireless-network-simulation-in-ns2/
WIRELESS SENSOR NETWORKS PROJECTS IN NS2-----------http://networksimulator2.com/wireless-sensor-networks-projects-in-ns2/
wn.com/Long Term Evolution Projects | Network Simulator2 Projects
Long Term Evolution projects LTE (Long Term Evolution) is a very good, easily deployable network technology, offering high speeds and low latencies over long distances. http://www.networksimulator2.com
Reasons for inviting LTE technology:
• Need to ensure the continuity of competitiveness of the 3G system for the future
• User demand for higher data rates and quality of service
• Packet Switch optimized system
• Continued demand for cost reduction (CAPEX and OPEX)
• Low complexity
• Avoid unnecessary fragmentation of technologies for paired and unpaired band operation
Concepts involved in LTE are as follows:
• Gain high spectral efficiency
• High peak data rates
• Short round trip time as well as flexibility in frequency and bandwidth.
• For supporting higher speed mobility
• Packet scheduling
• interference management
• handover control
• OFDM & various MIMO enhancement
• Channel/carrier aggregation
• RN (Multi-hop Transmission)
• CoMP (Multi-cell cooperation Tx/Rx)
• Densification (small cell solution )
• Interference management in heterogeneous cell overly etc.
4G LTE is a standard for wireless communication of high-speed data for mobile phones and data terminals.
Long Term Evolution (LTE) is a 4G wireless broadband technology developed by the Third Generation Partnership Project (3GPP)
LTE (Long Term Evolution) is a wireless broadband technology designed to support roaming Internet access via cell phones and handheld devices.
LTE can theoretically support downloads at 300 Megabits per second (Mbps)
Subscribe us
Facebook :https://www.facebook.com/Networksimulatorprojects-1634430183461874
Twitter :https://twitter.com/ns2simulatorRT
Google+ :https://plus.google.com/u/0/b/103707514455213973852/
Pinterest :https://in.pinterest.com/ns2projects/
Youtube :https://www.youtube.com/channel/UCvDb7e1GA4FwTRCIFJ7YXHw
Flickr :https://www.flickr.com/photos/134665363@N05/
Vimeo:https://vimeo.com/networksimulator2project/videos
Dailymotion:http://www.dailymotion.com/networksimulator2projectteam
visit us :http://networksimulator2.com/
NS2 PROJECTS---------------http://networksimulator2.com/ns2-projects/
NS2 ATTACK----------------http://networksimulator2.com/ns2-attack/
NS2 WORMHOLE ATTACK---------http://networksimulator2.com/ns2-wormhole-attack/
NS2 DDOS ATTACK----------http://networksimulator2.com/ns2-ddos-attack/
NS2 SIMULATION PROJECTS---------http://networksimulator2.com/ns2-simulation-projects/
NS2 WIRELESS PROJECTS-----------http://networksimulator2.com/ns2-wireless-projects/
WIRELESS COMMUNICATION NS2 PROJECTS----------http://networksimulator2.com/wireless-communication-ns2-projects/
WIRELESS NETWORK SIMULATION IN NS2------------http://networksimulator2.com/wireless-network-simulation-in-ns2/
WIRELESS SENSOR NETWORKS PROJECTS IN NS2-----------http://networksimulator2.com/wireless-sensor-networks-projects-in-ns2/
- published: 08 Sep 2015
- views: 41
Samsung Galaxy Tab 10.1 LTE / 4G
(Uploaded via 4G) So HSPA+ also known as LTE (Long Term Evolution) can provide data rates in theory to 84mbit/s 22Mbit/s HSPA+ is a major step along the lines ...
(Uploaded via 4G) So HSPA+ also known as LTE (Long Term Evolution) can provide data rates in theory to 84mbit/s 22Mbit/s HSPA+ is a major step along the lines of the 3GPP Long Evolution as definded in the 3GPP release notes REL8. So, this tablet is running Hipernet 21 from Telenor with 21mbit and 2mbit upload speed and here you can see the tests so far, although further from central Budapest and BTS the speeds drop. I will make more tests now as the sim card is installed and this netbook is running always Telenor Hipernet 42 and is a fast as a flee on the uploads to google
wn.com/Samsung Galaxy Tab 10.1 Lte 4G
(Uploaded via 4G) So HSPA+ also known as LTE (Long Term Evolution) can provide data rates in theory to 84mbit/s 22Mbit/s HSPA+ is a major step along the lines of the 3GPP Long Evolution as definded in the 3GPP release notes REL8. So, this tablet is running Hipernet 21 from Telenor with 21mbit and 2mbit upload speed and here you can see the tests so far, although further from central Budapest and BTS the speeds drop. I will make more tests now as the sim card is installed and this netbook is running always Telenor Hipernet 42 and is a fast as a flee on the uploads to google
- published: 29 Nov 2011
- views: 2207
LG LTE Live Air Demo (MWC 2009)
LG is to demonstrate the world's first data card based on 3GPP Long Term Evolution (LTE) technology standards at Mobile World Congress 2009 in Barcelona. Data c...
LG is to demonstrate the world's first data card based on 3GPP Long Term Evolution (LTE) technology standards at Mobile World Congress 2009 in Barcelona. Data card uses LG's own modem chip solution.
wn.com/Lg Lte Live Air Demo (Mwc 2009)
LG is to demonstrate the world's first data card based on 3GPP Long Term Evolution (LTE) technology standards at Mobile World Congress 2009 in Barcelona. Data card uses LG's own modem chip solution.
- published: 23 Feb 2009
- views: 1087
LG : Worlds First LTE Handset Modem Chip
LG independently developed the first handset (user equipment) modem chip based on 3GPP Long Term Evolution (LTE)* technology standards. Check this clip to know...
LG independently developed the first handset (user equipment) modem chip based on 3GPP Long Term Evolution (LTE)* technology standards. Check this clip to know more of it. Visit http://www.lge.com/index.jhtml for more information !!!
wn.com/Lg Worlds First Lte Handset Modem Chip
LG independently developed the first handset (user equipment) modem chip based on 3GPP Long Term Evolution (LTE)* technology standards. Check this clip to know more of it. Visit http://www.lge.com/index.jhtml for more information !!!
- published: 10 Dec 2008
- views: 1429
LG LTE Live Air Demo (Barcelona)
LG Electronics (LG), a worldwide technology and design leader in mobile communications, announced that it will demonstrate the first data card based on 3GPP Lon...
LG Electronics (LG), a worldwide technology and design leader in mobile communications, announced that it will demonstrate the first data card based on 3GPP Long Term Evolution (LTE) technology standards during the GSMA Mobile World Congress 2009.
wn.com/Lg Lte Live Air Demo (Barcelona)
LG Electronics (LG), a worldwide technology and design leader in mobile communications, announced that it will demonstrate the first data card based on 3GPP Long Term Evolution (LTE) technology standards during the GSMA Mobile World Congress 2009.
- published: 24 Feb 2009
- views: 500
One global standard
The worlds leading telecom operators are committing to 3GPP Long Term Evolution (LTE) as they advance toward the next generation of mobile networks. Listen to w...
The worlds leading telecom operators are committing to 3GPP Long Term Evolution (LTE) as they advance toward the next generation of mobile networks. Listen to what Håkan Eriksson, Chief Technology Officer at Ericsson, has to say about LTE, the first global standard for mobile communication.
wn.com/One Global Standard
The worlds leading telecom operators are committing to 3GPP Long Term Evolution (LTE) as they advance toward the next generation of mobile networks. Listen to what Håkan Eriksson, Chief Technology Officer at Ericsson, has to say about LTE, the first global standard for mobile communication.
- published: 23 Jan 2009
- views: 1698
Tech Talk: LTE Release 12 and beyond
Discover more of our technology insights: http://www.ericsson.com/thinkingahead/technology_insights
In this new Tech Talk, Maria Edvardsson from Ericsson Resea...
Discover more of our technology insights: http://www.ericsson.com/thinkingahead/technology_insights
In this new Tech Talk, Maria Edvardsson from Ericsson Research looks at the evolution of LTE and describes six of the technical areas that we believe in for the evolution of LTE.
This Tech Talk is about the evolution of LTE. The first release of LTE was finalized in 2008 and one year later the first network was up running. The standardization of LTE Release 12 has just started.
What is most important in the evolution of LTE is that Ericsson's macro networks continue to improve. We also believe in improvements for local area access and for some new use-cases.
In this Tech Talk, we describe six of the technical areas that we believe in for the evolution of LTE; elevation beamforming, dual connectivity, WiFi integration, device-to-device, machine type communication and lean carrier.
These improvements will result in improved capacity, improved end-user quality, and improved functionality for such large amounts of connected devices. The systems will be also be affordable and sustainable.
wn.com/Tech Talk Lte Release 12 And Beyond
Discover more of our technology insights: http://www.ericsson.com/thinkingahead/technology_insights
In this new Tech Talk, Maria Edvardsson from Ericsson Research looks at the evolution of LTE and describes six of the technical areas that we believe in for the evolution of LTE.
This Tech Talk is about the evolution of LTE. The first release of LTE was finalized in 2008 and one year later the first network was up running. The standardization of LTE Release 12 has just started.
What is most important in the evolution of LTE is that Ericsson's macro networks continue to improve. We also believe in improvements for local area access and for some new use-cases.
In this Tech Talk, we describe six of the technical areas that we believe in for the evolution of LTE; elevation beamforming, dual connectivity, WiFi integration, device-to-device, machine type communication and lean carrier.
These improvements will result in improved capacity, improved end-user quality, and improved functionality for such large amounts of connected devices. The systems will be also be affordable and sustainable.
- published: 23 Apr 2013
- views: 9091
Module 4 - 4G LTE & EPC Network Architecture
This module describes the network architects for 2G, 3G and 4G Mobile Networks. The main focus in on LTE/EPC Network Architecture....
This module describes the network architects for 2G, 3G and 4G Mobile Networks. The main focus in on LTE/EPC Network Architecture.
wn.com/Module 4 4G Lte Epc Network Architecture
This module describes the network architects for 2G, 3G and 4G Mobile Networks. The main focus in on LTE/EPC Network Architecture.
- published: 13 Jun 2013
- views: 18400
Два защищенных планшета от Panasonic A1 и B1
Первый аппарат под индексом A1 имеет 10-дюймовый дисплей с антибликовым покрытием, разрешением 1024 х 768, двухъядерный 1,2 ГГц процессор Marvell, и 16 Гб встро...
Первый аппарат под индексом A1 имеет 10-дюймовый дисплей с антибликовым покрытием, разрешением 1024 х 768, двухъядерный 1,2 ГГц процессор Marvell, и 16 Гб встроенной памяти, которую можно расширить с помощью карты MicroSD. Вес аппарата чуть менее килограмма. Аппарат будет оснащаться модулем LTE (3GPP Long Term Evolution) или WiMAX на выбор. Операционная система Android 3.0. Время автономной работы составляет 10 часов. О более компактном B1 с 7-дюймовым экраном, пока нет подробной информации. Известно, что оба планшета соответствуют американскому военному стандарту MIL-STD-810G, что гарантирует защиту от вибраций, ударов, водяных брызг и пыли. Предполагаемая цена начинается от $ 1300. На рынок новинки выйдут в следующем году.
wn.com/Два Защищенных Планшета От Panasonic A1 И B1
Первый аппарат под индексом A1 имеет 10-дюймовый дисплей с антибликовым покрытием, разрешением 1024 х 768, двухъядерный 1,2 ГГц процессор Marvell, и 16 Гб встроенной памяти, которую можно расширить с помощью карты MicroSD. Вес аппарата чуть менее килограмма. Аппарат будет оснащаться модулем LTE (3GPP Long Term Evolution) или WiMAX на выбор. Операционная система Android 3.0. Время автономной работы составляет 10 часов. О более компактном B1 с 7-дюймовым экраном, пока нет подробной информации. Известно, что оба планшета соответствуют американскому военному стандарту MIL-STD-810G, что гарантирует защиту от вибраций, ударов, водяных брызг и пыли. Предполагаемая цена начинается от $ 1300. На рынок новинки выйдут в следующем году.
- published: 09 Nov 2011
- views: 609
The iPhone 4
The iPhone 4 and the 4G (4th Generation) Network, are also known as 3GPP Long Term Evolution (LTE), is the latest standard in the mobile network. WiMAX vs. LTE ...
The iPhone 4 and the 4G (4th Generation) Network, are also known as 3GPP Long Term Evolution (LTE), is the latest standard in the mobile network. WiMAX vs. LTE vs. HSPA+ either way they are all part of UMTS, (Universal Mobile Telephone System)
wn.com/The Iphone 4
The iPhone 4 and the 4G (4th Generation) Network, are also known as 3GPP Long Term Evolution (LTE), is the latest standard in the mobile network. WiMAX vs. LTE vs. HSPA+ either way they are all part of UMTS, (Universal Mobile Telephone System)
- published: 03 Jun 2011
- views: 45
Multiuser Scheduling in the 3GPP LTE Cellular Uplink
ECWAY TECHNOLOGIES @ IEEE EMBEDDED PROJECTS
ECWAY TECHNOLOGIES @ IEEE MECHANICAL PROJECTS
ECWAY TECHNOLOGIES @ IEEE VLSI PROJECTS
ECWAY TECHNOLOGIES @ IEEE ROBT...
ECWAY TECHNOLOGIES @ IEEE EMBEDDED PROJECTS
ECWAY TECHNOLOGIES @ IEEE MECHANICAL PROJECTS
ECWAY TECHNOLOGIES @ IEEE VLSI PROJECTS
ECWAY TECHNOLOGIES @ IEEE ROBTICS PROJECTS
ECWAY TECHNOLOGIES @ IEEE POWER ELECTRONICS PROJECTS
ECWAY TECHNOLOGIES @ IEEE JAVA PROJECTS
ECWAY TECHNOLOGIES @ IEEE .NET PROJECTS
ECWAY TECHNOLOGIES @ IEEE NS2 PROJECTS
ECWAY TECHNOLOGIES @ IEEE MATLAB PROJECTS
ECWAY TECHNOLOGIES @ IEEE ANDROID PROJECTS
SUMMARY:
Final Year IEEE Projects for BE, B.Tech, ME, M.Tech,M.Sc, MCA & Diploma Students latest Java, .Net, Matlab, NS2, Android, Embedded,Mechanical, Robtics, VLSI, Power Electronics, IEEE projects are given absolutely complete working product and document providing with real time Software & Embedded training......
----------------------------------------------------------------
JAVA & .NET PROJECTS:
Networking, Network Security, Data Mining, Cloud Computing, Grid Computing, Web Services, Mobile Computing, Software Engineering, Image Processing, E-Commerce, Games App, Multimedia, etc.,
EMBEDDED SYSTEMS:
Embedded Systems,Micro Controllers, DSC & DSP, VLSI Design, Biometrics, RFID, Finger Print, Smart Cards, IRIS, Bar Code, Bluetooth, Zigbee, GPS, Voice Control, Remote System, Power Electronics, etc.,
ROBOTICS PROJECTS:
Mobile Robots, Service Robots, Industrial Robots, Defence Robots, Spy Robot, Artificial Robots, Automated Machine Control, Stair Climbing, Cleaning, Painting, Industry Security Robots, etc.,
MOBILE APPLICATION (ANDROID & J2ME):
Android Application, Web Services, Wireless Application, Bluetooth Application, WiFi Application, Mobile Security, Multimedia Projects, Multi Media, E-Commerce, Games Application, etc.,
MECHANICAL PROJECTS:
Auto Mobiles, Hydraulics, Robotics, Air Assisted Exhaust Breaking System, Automatic Trolley for Material Handling System in Industry, Hydraulics And Pneumatics, CAD/CAM/CAE Projects, Special Purpose Hydraulics And Pneumatics, CATIA, ANSYS, 3D Model Animations, etc.,
CONTACT US:
ECWAY TECHNOLOGIES
15/1 Sathiyamoorthi Nagar, 2nd Cross,
Thanthonimalai(Opp To Govt. Arts College)
Karur-639 005. TamilNadu , India.
Cell: +91 9894917187.
Website: www.ecwayprojects.com | www.ecwaytechnologies.com
Mail to: ecwaytechnologies@gmail.com.
wn.com/Multiuser Scheduling In The 3Gpp Lte Cellular Uplink
ECWAY TECHNOLOGIES @ IEEE EMBEDDED PROJECTS
ECWAY TECHNOLOGIES @ IEEE MECHANICAL PROJECTS
ECWAY TECHNOLOGIES @ IEEE VLSI PROJECTS
ECWAY TECHNOLOGIES @ IEEE ROBTICS PROJECTS
ECWAY TECHNOLOGIES @ IEEE POWER ELECTRONICS PROJECTS
ECWAY TECHNOLOGIES @ IEEE JAVA PROJECTS
ECWAY TECHNOLOGIES @ IEEE .NET PROJECTS
ECWAY TECHNOLOGIES @ IEEE NS2 PROJECTS
ECWAY TECHNOLOGIES @ IEEE MATLAB PROJECTS
ECWAY TECHNOLOGIES @ IEEE ANDROID PROJECTS
SUMMARY:
Final Year IEEE Projects for BE, B.Tech, ME, M.Tech,M.Sc, MCA & Diploma Students latest Java, .Net, Matlab, NS2, Android, Embedded,Mechanical, Robtics, VLSI, Power Electronics, IEEE projects are given absolutely complete working product and document providing with real time Software & Embedded training......
----------------------------------------------------------------
JAVA & .NET PROJECTS:
Networking, Network Security, Data Mining, Cloud Computing, Grid Computing, Web Services, Mobile Computing, Software Engineering, Image Processing, E-Commerce, Games App, Multimedia, etc.,
EMBEDDED SYSTEMS:
Embedded Systems,Micro Controllers, DSC & DSP, VLSI Design, Biometrics, RFID, Finger Print, Smart Cards, IRIS, Bar Code, Bluetooth, Zigbee, GPS, Voice Control, Remote System, Power Electronics, etc.,
ROBOTICS PROJECTS:
Mobile Robots, Service Robots, Industrial Robots, Defence Robots, Spy Robot, Artificial Robots, Automated Machine Control, Stair Climbing, Cleaning, Painting, Industry Security Robots, etc.,
MOBILE APPLICATION (ANDROID & J2ME):
Android Application, Web Services, Wireless Application, Bluetooth Application, WiFi Application, Mobile Security, Multimedia Projects, Multi Media, E-Commerce, Games Application, etc.,
MECHANICAL PROJECTS:
Auto Mobiles, Hydraulics, Robotics, Air Assisted Exhaust Breaking System, Automatic Trolley for Material Handling System in Industry, Hydraulics And Pneumatics, CAD/CAM/CAE Projects, Special Purpose Hydraulics And Pneumatics, CATIA, ANSYS, 3D Model Animations, etc.,
CONTACT US:
ECWAY TECHNOLOGIES
15/1 Sathiyamoorthi Nagar, 2nd Cross,
Thanthonimalai(Opp To Govt. Arts College)
Karur-639 005. TamilNadu , India.
Cell: +91 9894917187.
Website: www.ecwayprojects.com | www.ecwaytechnologies.com
Mail to: ecwaytechnologies@gmail.com.
- published: 03 Jan 2014
- views: 166
Lte Projects | LTE | LTE Tutorial | 2015 LTE Projects
Long Term Evolution (LTE projects) is a 4G wireless broadband technology developed by the Third Generation Partnership Project (3GPP), that's designed to provi...
Long Term Evolution (LTE projects) is a 4G wireless broadband technology developed by the Third Generation Partnership Project (3GPP), that's designed to provide up to 10x the speeds of 3G networks for mobile devices such as smartphones,tablets, netbooks, notebooks and wireless hotspots.
https://academiccollegeprojects.com/lte-projects/
wn.com/Lte Projects | Lte | Lte Tutorial | 2015 Lte Projects
Long Term Evolution (LTE projects) is a 4G wireless broadband technology developed by the Third Generation Partnership Project (3GPP), that's designed to provide up to 10x the speeds of 3G networks for mobile devices such as smartphones,tablets, netbooks, notebooks and wireless hotspots.
https://academiccollegeprojects.com/lte-projects/
- published: 12 Aug 2015
- views: 73
LTE and the Evolution to LTE Advanced Fundamentals Part Two
This webcast will start by covering the basics of MIMO. We will then discuss the fundamentals of LTE-Advanced including the main features of Release 10, carrier...
This webcast will start by covering the basics of MIMO. We will then discuss the fundamentals of LTE-Advanced including the main features of Release 10, carrier aggregation, clustered SC-FDMA and more. We will conclude with test requirements of these key areas.
Get resources on 3GPP LTE and other wireless technologies synthesis from Keysight
www.keysight.com/find/LTE-forward
wn.com/Lte And The Evolution To Lte Advanced Fundamentals Part Two
This webcast will start by covering the basics of MIMO. We will then discuss the fundamentals of LTE-Advanced including the main features of Release 10, carrier aggregation, clustered SC-FDMA and more. We will conclude with test requirements of these key areas.
Get resources on 3GPP LTE and other wireless technologies synthesis from Keysight
www.keysight.com/find/LTE-forward
- published: 02 Aug 2014
- views: 2283
Security Analysis of Handover Key Management in 4G LTESAE Networks |IEEE |IEEE projects
The goal of 3GPP Long Term Evolution/System Architecture Evolution (LTE/SAE) is to move mobile cellular wireless technology into its fourth generation. One of t...
The goal of 3GPP Long Term Evolution/System Architecture Evolution (LTE/SAE) is to move mobile cellular wireless technology into its fourth generation. One of the unique challenges of fourth-generation technology is how to close a security gap through which a single compromised or malicious device can jeopardize an entire mobile network because of the open nature of these networks. To meet this challenge, handover key management in the 3GPP LTE/SAE has been designed to revoke any compromised key(s) and as a consequence isolate corrupted network devices. This paper, however, identifies and details the vulnerability of this handover key management to what are called desynchronization attacks; such attacks jeopardize secure communication between users and mobile networks. Although periodic updates of the root key are an integral part of handover key management, our work here emphasizes how essential these updates are to minimizing the effect of desynchronization attacks that, as of now, cannot be effectively prevented. Our main contribution, however, is to explore how network operators can determine for themselves an optimal interval for updates that minimizes the signaling load they impose while protecting the security of user traffic. Our analytical and simulation studies demonstrate the impact of the key update interval on such performance criteria as network topology and user mobility.
Mob: 9985613074, 7396708351
Site: www.newieeeprojects.com
Email: newieeeprojects@gmail.com
wn.com/Security Analysis Of Handover Key Management In 4G Ltesae Networks |Ieee |Ieee Projects
The goal of 3GPP Long Term Evolution/System Architecture Evolution (LTE/SAE) is to move mobile cellular wireless technology into its fourth generation. One of the unique challenges of fourth-generation technology is how to close a security gap through which a single compromised or malicious device can jeopardize an entire mobile network because of the open nature of these networks. To meet this challenge, handover key management in the 3GPP LTE/SAE has been designed to revoke any compromised key(s) and as a consequence isolate corrupted network devices. This paper, however, identifies and details the vulnerability of this handover key management to what are called desynchronization attacks; such attacks jeopardize secure communication between users and mobile networks. Although periodic updates of the root key are an integral part of handover key management, our work here emphasizes how essential these updates are to minimizing the effect of desynchronization attacks that, as of now, cannot be effectively prevented. Our main contribution, however, is to explore how network operators can determine for themselves an optimal interval for updates that minimizes the signaling load they impose while protecting the security of user traffic. Our analytical and simulation studies demonstrate the impact of the key update interval on such performance criteria as network topology and user mobility.
Mob: 9985613074, 7396708351
Site: www.newieeeprojects.com
Email: newieeeprojects@gmail.com
- published: 04 Sep 2014
- views: 108
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ShmooCon 2014: LTE vs. Darwin
Whether believing in Darwin or not, the Darwin-Award states an important fact of mankind, technology and probably everything that exists: You only make certain mistakes once. For mankind this usually implies taking oneself out of the gene pool, for companies it can mean to vanish of the market and for technology, well, early death.
So when looking at "Long Term Evolution," providers need to imple
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Diameter Signaling Control for LTE Networks
For more webinars, go to: http://www.infonetics.com/infonetics-events/
OVERVIEW
The demand for controllers to help manage the growth of Diameter signaling continues to expand as traffic on next-gen networks, especially LTE networks, skyrockets. The Diameter signaling protocol enables AAA, policy control, and charging for mobile broadband and IMS. This webinar provides insights into the current Di
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شرح الجيل الرابع 4G LTE ( long term evolution ) باللغة العربية
أول شرح عربى للجيل الرابع LTE ( long term evolution ) من الاتصالات الخلوية من تقديم م / محمود عبدالعزيز صاحب مدونة ( نظرة بعمق http://engineermahmoud.blogspot.com/ ) أول موقع ومدونة باللغة العربية فى تخصص هندسة الاتصالات والالكترونيات.
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LTE-A SON for Femtocells
Abstract: Mobile wireless networks today have many network elements and associated parameters manually configured. Planning, commissioning, configuration, integration and management of these parameters are essential for efficient and reliable network operation; however, the associated operations costs are significant. Specialised expertise must be maintained to tune these network parameters, and t
-
Long Term Evolution (LTE) Simulation and Analysis
By mimicking real-world customer behavior in lab environments, our solutions allow mobile operators and equipment manufacturers to verify their wireless networks before deployment. In other words, one can setup a virtual real-time network simulating all the network elements using “MAPS 4G Wireless Lab Suite”. The test suit supports simulation of S1-MME, S11, S5/S8, and other eGTP interfaces along
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#HITB2013AMS D1T2 Philippe Langlois - LTE Pwnage - Hacking Core Network Elements
PRESENTATION MATERIALS:
http://conference.hitb.org/hitbsecconf2013ams/materials/
PRESENTATION ABSTRACT:
Phrack and other magazines used to be full of obscure hardware and systems descriptions for telecom equipment that were the pride and the thrill of many dark-corner hackers. There's a specific kink about these strange OS, protocols and interfaces. But sadly (or not, as we'll see), it's a gon
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Opportunistic RF Localization: Expected performance of different 3GPP Rel-9 LTE positioning methods
Karri Ranta-aho, Senior Specialist, Radio Standardization, Nokia-Siemens Networks
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LTE/LTE-A Interference Coordination for Femtocells
Abstract: Femto-cells promise substantial gains in system spectral efficiency due to an enhanced reuse of radio resources. Femto-cells maintain an exclusive list of user equipments (UEs) that they serve. In this case, a
foreign macro UE trapped inside a femto-cell experiences heavy interference from this femto-cell. The first part of this talk investigates the issue of femto-to-macro interference
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Femto LTE-A Hardware Design Challenges
Abstract: 3GPP Release 10, better known as LTE-Advanced, answers the increasing users demand of traffic and throughput. Its target peak data rates of 1Gbps in downlink and 500Mbps in the uplink requires bandwidths wider than 20MHz, foreseen for LTE. The use of more efficient modulations and mainly, the bandwidth extension to 100MHz (achieved through carrier aggregation), puts a lot of pressure on
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8x8 MIMO and Carrier Aggregation Test Challenges for LTE 20130425 1320 1
The complexity of MIMO designs, driven by the new LTE standards, is further increased as MIMO systems scale up to 8x8 configurations. Moreover, other requirements such as beamforming and carrier aggregation drive the need for test solutions that provide deep insight within these multiple domains. Engineers who design and test advanced base stations, handsets and chipsets are looking for integrated
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HotSeat Episode 5: Envelope Tracking Technology
WDD's video series, the HotSeat, features design engineers and professionals who are interviewed on exclusive products, trends, and important issues that are occurring within the wireless community.
Pete Cain, the wireless solution planner for the Microwave and Communications division of the Electronic Measurements Group at Agilent Technologies, discusses the benefits of using envelope tracking,
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MIMO
In radio, multiple-input and multiple-output, or MIMO (pronounced as "my-moh" and/or "me-moh"), is the use of multiple antennas at both the transmitter and receiver to improve communication performance. It is one of several forms of smart antenna technology.
MIMO technology has attracted attention in wireless communications, because it offers significant increases in data throughput and link range
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Long Term Evolution Experiment - A Creationist Response
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Rohde & Schwarz webinar: Introduction to LTE UE RF measurements
LTE (long term evolution) is an advanced and complex technology that uses two different transmission schemes in the downlink and the uplink. LTE also specifies the support of different frequency bands, a subset of six bandwidths and different modes (FDD and TDD) - a challenge for chipset vendors and device manufacturers alike. In addition, the support of the multi-antenna technology known as MIMO
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Rohde & Schwarz webinar: Challenges in testing multi-standard radio base stations
This webinar provides an overview of new developments in the design of mobile radio base stations. It explains the new transmitter test requirements according to 3GPP TS 37.141 and demonstrates an efficient way of how to troubleshoot multi-standard base stations beyond these requirements using a modern signal and spectrum analyzer from Rohde & Schwarz.
The introduction of latest mobile radio st
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Long Term Evolution (LTE) Test Tools
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Rohde & Schwarz webinar: LTE UE RF measurements - reloaded
Are you familiar with PRACH measurements? And what about power dynamics? This Rohde & Schwarz webinar from March 2011 focuses on the amendments made to 3GPP TS 36.521-1 and explains the enhanced test definitions. The webinar illustrates on the Rohde & Schwarz CMW500 wideband radio communication tester how the specified RF test cases can be performed and automated, and how the results can be interp
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Formal Analysis of Security Procedures in LTE - A Feasibility Study; Noomene Ben Henda; Karl Norrman
Formal Analysis of Security Procedures in LTE - A Feasibility Study; Noomene Ben Henda; Karl Norrman
The only part of the Long Term Evolution (LTE) security standard that has been formally analyzed is the Authentication and Key Agreement (AKA) procedure. It is not clear how well existing security related verification tools can handle other types of procedures. In this work, we use ProVerif to ana
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Live Webcast: Wireless Mobility-How You Cellular Phone Surfs the Internet
During this event you will get an overview of long term evolution (LTE) and a detailed explanation of the subscriber call flow with Cisco expert Deepak Michael. He will explain common mobile wireless terminology; the fundamentals of LTE; and how a Packet Data Protocol (PDP) context is created, beginning with the end user powering a mobile device to surfing the web.
For more info on this topic, v
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LTE and the Broadcast Industry: An Overview and Outlook
This session will provide the high level view on LTE Broadcast (Long Term Evolution Broadcast), also known as eMBMS (Evolved Multimedia Broadcast Multicast System). We will discuss the way LTE broadcast enables mass distribution of content, both for live streams as well as file delivery service like pre-loading of in-device caches so that users have offline access to the content.
Session Format:
ShmooCon 2014: LTE vs. Darwin
Whether believing in Darwin or not, the Darwin-Award states an important fact of mankind, technology and probably everything that exists: You only make certain ...
Whether believing in Darwin or not, the Darwin-Award states an important fact of mankind, technology and probably everything that exists: You only make certain mistakes once. For mankind this usually implies taking oneself out of the gene pool, for companies it can mean to vanish of the market and for technology, well, early death.
So when looking at "Long Term Evolution," providers need to implement proposed features properly and work out secure configurations for their networks. Otherwise, they might be struck by Darwin; being hacked and having break ins in back - or front-end structures, could result in a situation from which companies might not be able to recover.
Having stated very ambitious plans, concepts and standards for LTE, the 3GPP group has designed a complex but self-organizing system. Surely, with new methods come new attack vectors. Our research is aimed at these new methods and split into three chapters: awareness of user equipment, an overview on self-organizing networks, and theoretical and practical attacks against themselves and their interfaces. This includes potential attack vectors, information gathering and an analysis of component implementation and the overall architecture.
Hendrik Schmidt and Brian Butterly are seasoned security researchers with vast experiences in large and complex enterprise networks. Over the years they focused on evaluating and reviewing all kinds of network protocols and applications. They love to play with packets and use them for their own purposes. In this context they learned how to play around with telecommunication networks, wrote protocol fuzzers and spoofers for testing their implementation and security architecture. Both are pentesters and consultants at the German based ERNW GmbH and will happily share their knowledge with the audience.
wn.com/Shmoocon 2014 Lte Vs. Darwin
Whether believing in Darwin or not, the Darwin-Award states an important fact of mankind, technology and probably everything that exists: You only make certain mistakes once. For mankind this usually implies taking oneself out of the gene pool, for companies it can mean to vanish of the market and for technology, well, early death.
So when looking at "Long Term Evolution," providers need to implement proposed features properly and work out secure configurations for their networks. Otherwise, they might be struck by Darwin; being hacked and having break ins in back - or front-end structures, could result in a situation from which companies might not be able to recover.
Having stated very ambitious plans, concepts and standards for LTE, the 3GPP group has designed a complex but self-organizing system. Surely, with new methods come new attack vectors. Our research is aimed at these new methods and split into three chapters: awareness of user equipment, an overview on self-organizing networks, and theoretical and practical attacks against themselves and their interfaces. This includes potential attack vectors, information gathering and an analysis of component implementation and the overall architecture.
Hendrik Schmidt and Brian Butterly are seasoned security researchers with vast experiences in large and complex enterprise networks. Over the years they focused on evaluating and reviewing all kinds of network protocols and applications. They love to play with packets and use them for their own purposes. In this context they learned how to play around with telecommunication networks, wrote protocol fuzzers and spoofers for testing their implementation and security architecture. Both are pentesters and consultants at the German based ERNW GmbH and will happily share their knowledge with the audience.
- published: 10 Jun 2014
- views: 2604
Diameter Signaling Control for LTE Networks
For more webinars, go to: http://www.infonetics.com/infonetics-events/
OVERVIEW
The demand for controllers to help manage the growth of Diameter signaling cont...
For more webinars, go to: http://www.infonetics.com/infonetics-events/
OVERVIEW
The demand for controllers to help manage the growth of Diameter signaling continues to expand as traffic on next-gen networks, especially LTE networks, skyrockets. The Diameter signaling protocol enables AAA, policy control, and charging for mobile broadband and IMS. This webinar provides insights into the current Diameter signaling market, including key drivers, opportunities, and challenges.
WHO SHOULD ATTEND
Mobile and fixed line operators, the media, and financial analysts.
KEY TOPICS FOR DISCUSSION
-Factors driving today's need for Diameter signaling controllers (DSCs)
-Key building blocks of a Diameter signaling network
-Use cases for DSCs: Centralized routing, roaming, and PCRF binding
-Key considerations when interworking Diameter with legacy network protocols
-Answers to audience questions during live Q&A;
SPEAKERS
-Diane Myers, Principal Analyst, VoIP, UC and IMS, Infonetics Research
-Hamdy Farid, Senior Director, Product Management, Alcatel-Lucent
-Tom Schroer, Director, Service Provider Marketing, Dialogic
-Peter Nas, Senior Solution Architect, F5
-Moderator: JoAnne Emery, Event Director, Infonetics Research
wn.com/Diameter Signaling Control For Lte Networks
For more webinars, go to: http://www.infonetics.com/infonetics-events/
OVERVIEW
The demand for controllers to help manage the growth of Diameter signaling continues to expand as traffic on next-gen networks, especially LTE networks, skyrockets. The Diameter signaling protocol enables AAA, policy control, and charging for mobile broadband and IMS. This webinar provides insights into the current Diameter signaling market, including key drivers, opportunities, and challenges.
WHO SHOULD ATTEND
Mobile and fixed line operators, the media, and financial analysts.
KEY TOPICS FOR DISCUSSION
-Factors driving today's need for Diameter signaling controllers (DSCs)
-Key building blocks of a Diameter signaling network
-Use cases for DSCs: Centralized routing, roaming, and PCRF binding
-Key considerations when interworking Diameter with legacy network protocols
-Answers to audience questions during live Q&A;
SPEAKERS
-Diane Myers, Principal Analyst, VoIP, UC and IMS, Infonetics Research
-Hamdy Farid, Senior Director, Product Management, Alcatel-Lucent
-Tom Schroer, Director, Service Provider Marketing, Dialogic
-Peter Nas, Senior Solution Architect, F5
-Moderator: JoAnne Emery, Event Director, Infonetics Research
- published: 10 Sep 2014
- views: 10943
شرح الجيل الرابع 4G LTE ( long term evolution ) باللغة العربية
أول شرح عربى للجيل الرابع LTE ( long term evolution ) من الاتصالات الخلوية من تقديم م / محمود عبدالعزيز صاحب مدونة ( نظرة بعمق http://engineermahmoud.blogspot.c...
أول شرح عربى للجيل الرابع LTE ( long term evolution ) من الاتصالات الخلوية من تقديم م / محمود عبدالعزيز صاحب مدونة ( نظرة بعمق http://engineermahmoud.blogspot.com/ ) أول موقع ومدونة باللغة العربية فى تخصص هندسة الاتصالات والالكترونيات.
wn.com/شرح الجيل الرابع 4G Lte ( Long Term Evolution ) باللغة العربية
أول شرح عربى للجيل الرابع LTE ( long term evolution ) من الاتصالات الخلوية من تقديم م / محمود عبدالعزيز صاحب مدونة ( نظرة بعمق http://engineermahmoud.blogspot.com/ ) أول موقع ومدونة باللغة العربية فى تخصص هندسة الاتصالات والالكترونيات.
- published: 15 Feb 2013
- views: 21524
LTE-A SON for Femtocells
Abstract: Mobile wireless networks today have many network elements and associated parameters manually configured. Planning, commissioning, configuration, integ...
Abstract: Mobile wireless networks today have many network elements and associated parameters manually configured. Planning, commissioning, configuration, integration and management of these parameters are essential for efficient and reliable network operation; however, the associated operations costs are significant. Specialised expertise must be maintained to tune these network parameters, and the existing manual process is time-consuming and potentially error-prone. In addition, this manual tuning process inherently results in comparatively long delays in updating values in response to the often rapidly changing network topologies and operating conditions, resulting in sub-optimal network performance. Heavily based on the recently released document "Benefits of SON in LTE", this talk gives an overview of SON activities within 3GPP. It justifies the needs of automatic networking operations in the increasingly heterogeneous wireless technology environment, and highlights latest SON functionalities of LTE/LTE-A.
Biography: Mischa Dohler is now leading the Intelligent Energy [IQe] group at CTTC in Barcelona, with focus on Smart Grids and Green Radios. He is working on machine-to-machine, wireless sensor, femto, cooperative, cognitive and docitive networks. In the framework of the Mobile VCE, he has pioneered research on distributed cooperative space-time encoded communication systems, dating back to December 1999. He has published around 150 technical journal and conference papers at a citation h-index of 26 and citation g-index of 55, holds a dozen patents, authored, co-edited and contributed to 19 books, has given 25 international short-courses, and participated in various standardisation activities. He has been TPC member and co-chair of various conferences, such as technical chair of IEEE PIMRC 2008 held in Cannes, France. He is Editor-in-Chief of ETT and is/has been holding various editorial positions for numerous IEEE and non-IEEE journals. He is Senior Member of the IEEE and Distinguished Lecturer of IEEE ComSoc. He is fluent in 6 languages. From June 2005 to February 2008, he has been Senior Research Expert in the R&D; division of France Telecom, France. From September 2003 to June 2005, he has been lecturer at King's College London, UK. At that time, he has also been London Technology Network Business Fellow receiving Anglo-Saxon business training, as well as Student Representative of the IEEE UKRI Section and member of the Student Activity Committee of IEEE Region 8 (Europe, Africa, Middle-East and Russia). He obtained his PhD in Telecommunications from King's College London, UK, in 2003, his Diploma in Electrical Engineering from Dresden University of Technology, Germany, in 2000, and his MSc degree in Telecommunications from King's College London, UK, in 1999. Prior to Telecommunications, he studied Physics in Moscow. He has won various competitions in Mathematics and Physics, and participated in the 3rd round of the International Physics Olympics for Germany.
wn.com/Lte A Son For Femtocells
Abstract: Mobile wireless networks today have many network elements and associated parameters manually configured. Planning, commissioning, configuration, integration and management of these parameters are essential for efficient and reliable network operation; however, the associated operations costs are significant. Specialised expertise must be maintained to tune these network parameters, and the existing manual process is time-consuming and potentially error-prone. In addition, this manual tuning process inherently results in comparatively long delays in updating values in response to the often rapidly changing network topologies and operating conditions, resulting in sub-optimal network performance. Heavily based on the recently released document "Benefits of SON in LTE", this talk gives an overview of SON activities within 3GPP. It justifies the needs of automatic networking operations in the increasingly heterogeneous wireless technology environment, and highlights latest SON functionalities of LTE/LTE-A.
Biography: Mischa Dohler is now leading the Intelligent Energy [IQe] group at CTTC in Barcelona, with focus on Smart Grids and Green Radios. He is working on machine-to-machine, wireless sensor, femto, cooperative, cognitive and docitive networks. In the framework of the Mobile VCE, he has pioneered research on distributed cooperative space-time encoded communication systems, dating back to December 1999. He has published around 150 technical journal and conference papers at a citation h-index of 26 and citation g-index of 55, holds a dozen patents, authored, co-edited and contributed to 19 books, has given 25 international short-courses, and participated in various standardisation activities. He has been TPC member and co-chair of various conferences, such as technical chair of IEEE PIMRC 2008 held in Cannes, France. He is Editor-in-Chief of ETT and is/has been holding various editorial positions for numerous IEEE and non-IEEE journals. He is Senior Member of the IEEE and Distinguished Lecturer of IEEE ComSoc. He is fluent in 6 languages. From June 2005 to February 2008, he has been Senior Research Expert in the R&D; division of France Telecom, France. From September 2003 to June 2005, he has been lecturer at King's College London, UK. At that time, he has also been London Technology Network Business Fellow receiving Anglo-Saxon business training, as well as Student Representative of the IEEE UKRI Section and member of the Student Activity Committee of IEEE Region 8 (Europe, Africa, Middle-East and Russia). He obtained his PhD in Telecommunications from King's College London, UK, in 2003, his Diploma in Electrical Engineering from Dresden University of Technology, Germany, in 2000, and his MSc degree in Telecommunications from King's College London, UK, in 1999. Prior to Telecommunications, he studied Physics in Moscow. He has won various competitions in Mathematics and Physics, and participated in the 3rd round of the International Physics Olympics for Germany.
- published: 14 Feb 2012
- views: 9882
Long Term Evolution (LTE) Simulation and Analysis
By mimicking real-world customer behavior in lab environments, our solutions allow mobile operators and equipment manufacturers to verify their wireless network...
By mimicking real-world customer behavior in lab environments, our solutions allow mobile operators and equipment manufacturers to verify their wireless networks before deployment. In other words, one can setup a virtual real-time network simulating all the network elements using “MAPS 4G Wireless Lab Suite”. The test suit supports simulation of S1-MME, S11, S5/S8, and other eGTP interfaces along with Diameter interfaces.
wn.com/Long Term Evolution (Lte) Simulation And Analysis
By mimicking real-world customer behavior in lab environments, our solutions allow mobile operators and equipment manufacturers to verify their wireless networks before deployment. In other words, one can setup a virtual real-time network simulating all the network elements using “MAPS 4G Wireless Lab Suite”. The test suit supports simulation of S1-MME, S11, S5/S8, and other eGTP interfaces along with Diameter interfaces.
- published: 01 Oct 2015
- views: 329
#HITB2013AMS D1T2 Philippe Langlois - LTE Pwnage - Hacking Core Network Elements
PRESENTATION MATERIALS:
http://conference.hitb.org/hitbsecconf2013ams/materials/
PRESENTATION ABSTRACT:
Phrack and other magazines used to be full of obscur...
PRESENTATION MATERIALS:
http://conference.hitb.org/hitbsecconf2013ams/materials/
PRESENTATION ABSTRACT:
Phrack and other magazines used to be full of obscure hardware and systems descriptions for telecom equipment that were the pride and the thrill of many dark-corner hackers. There's a specific kink about these strange OS, protocols and interfaces. But sadly (or not, as we'll see), it's a gone era. Gone are the DMS100, the DX200, the COSMOS switches and other telecom legacy beauty, ahem, well, at least it SHOULD BE GONE.
Today, we're entering the realm of LTE super high speed always-on connectivity and with that comes the victory of TCP/IP in front of the old ITU/3GPP protocols. And with this comes many side effects: software gets standardized, everything runs on top of ATCA (Advanced Telecom Computing Architecture) hardware running mostly Linux -give or take 6 or 8 proprietary FPGA-based sister cards, TFTP-booted with decade old VxWorks that routinely show hardcoded DES credentials and funny "behaviour". Easily 20 GB of fat C++ binaries, some for x86, PPC, MIPS, some with up to 200 Mbytes file sizes for one single EXE! It's called a vulnerability research and reverse engineering paradise... or hell.
All the protocols now run on top of IP, which ends up having 12 layers thanks to encapsulation and still the weight of legacy in bugs quantity and diversity. We'll see how the porting of SS7 MAP on top of IP (SIGTRAN, Diameter) has given rise to funny Denial of Service (DoS) attacks against telecom core elements (DSR, STP), with trashy-crashy anti-forensics consequences for DPI and tracking (Hey @grugq!!).
We'll look into specific vulnerabilities, and talk about the very particular way that Network Equipment Vendors deal with security in the telecom domain. We will demo a virtualized Huawei HSS from our testbed and show some of the vulnerabilities and attacks directly on the equipment itself. We will finally talk about telco equipment and product security reviews and the fallacy of (some) certification and (many) standardization attempts. We will then see how to conduct a practical and fast telecom product security life cycle with automation and open source tools.
ABOUT PHILIPPE LANGLOIS
Philippe Langlois is an entrepreneur and leading security researcher, expert in the domain of telecom and network security. He has founded internationally recognized security companies (Qualys, WaveSecurity, INTRINsec, P1 Security) as well as led technical, development and research teams (Solsoft, TSTF). He founded Qualys and led the world-leading vulnerability assessment service. He founded a pioneering network security company Intrinsec in 1995 in France.
His first business, Worldnet, France's first public Internet service provider, was founded in 1993. Philippe was also lead designer for Payline, one of the first e-commerce payment gateways. He has written and translated security books, including some of the earliest references in the field of computer security, and has been giving speeches on network security since 1995 (Interop, BlackHat, HITB, Hack.lu). Previously a professor at Ecole de Guerre Economique and various universities in France (Amiens, Marne La Vallée) and internationally (FUSR-U, EERCI, ANRSI). He is a FUSR-U collaborator and founding member.
Philippe advises industry associations (GSM Association Security Group, several national organizations) and governmental officials and contributes to Critical Infrastructure advisory committees and conferences in Telecom and Network security. Now, Philippe is providing with P1 Security the first Core Network Telecom Signaling security scanner & auditor which help telecom companies, operators and government analyze where and how their critical telecom network infrastructure can be attacked. He can be reached through his website at: http://www.p1security.com
wn.com/Hitb2013Ams D1T2 Philippe Langlois Lte Pwnage Hacking Core Network Elements
PRESENTATION MATERIALS:
http://conference.hitb.org/hitbsecconf2013ams/materials/
PRESENTATION ABSTRACT:
Phrack and other magazines used to be full of obscure hardware and systems descriptions for telecom equipment that were the pride and the thrill of many dark-corner hackers. There's a specific kink about these strange OS, protocols and interfaces. But sadly (or not, as we'll see), it's a gone era. Gone are the DMS100, the DX200, the COSMOS switches and other telecom legacy beauty, ahem, well, at least it SHOULD BE GONE.
Today, we're entering the realm of LTE super high speed always-on connectivity and with that comes the victory of TCP/IP in front of the old ITU/3GPP protocols. And with this comes many side effects: software gets standardized, everything runs on top of ATCA (Advanced Telecom Computing Architecture) hardware running mostly Linux -give or take 6 or 8 proprietary FPGA-based sister cards, TFTP-booted with decade old VxWorks that routinely show hardcoded DES credentials and funny "behaviour". Easily 20 GB of fat C++ binaries, some for x86, PPC, MIPS, some with up to 200 Mbytes file sizes for one single EXE! It's called a vulnerability research and reverse engineering paradise... or hell.
All the protocols now run on top of IP, which ends up having 12 layers thanks to encapsulation and still the weight of legacy in bugs quantity and diversity. We'll see how the porting of SS7 MAP on top of IP (SIGTRAN, Diameter) has given rise to funny Denial of Service (DoS) attacks against telecom core elements (DSR, STP), with trashy-crashy anti-forensics consequences for DPI and tracking (Hey @grugq!!).
We'll look into specific vulnerabilities, and talk about the very particular way that Network Equipment Vendors deal with security in the telecom domain. We will demo a virtualized Huawei HSS from our testbed and show some of the vulnerabilities and attacks directly on the equipment itself. We will finally talk about telco equipment and product security reviews and the fallacy of (some) certification and (many) standardization attempts. We will then see how to conduct a practical and fast telecom product security life cycle with automation and open source tools.
ABOUT PHILIPPE LANGLOIS
Philippe Langlois is an entrepreneur and leading security researcher, expert in the domain of telecom and network security. He has founded internationally recognized security companies (Qualys, WaveSecurity, INTRINsec, P1 Security) as well as led technical, development and research teams (Solsoft, TSTF). He founded Qualys and led the world-leading vulnerability assessment service. He founded a pioneering network security company Intrinsec in 1995 in France.
His first business, Worldnet, France's first public Internet service provider, was founded in 1993. Philippe was also lead designer for Payline, one of the first e-commerce payment gateways. He has written and translated security books, including some of the earliest references in the field of computer security, and has been giving speeches on network security since 1995 (Interop, BlackHat, HITB, Hack.lu). Previously a professor at Ecole de Guerre Economique and various universities in France (Amiens, Marne La Vallée) and internationally (FUSR-U, EERCI, ANRSI). He is a FUSR-U collaborator and founding member.
Philippe advises industry associations (GSM Association Security Group, several national organizations) and governmental officials and contributes to Critical Infrastructure advisory committees and conferences in Telecom and Network security. Now, Philippe is providing with P1 Security the first Core Network Telecom Signaling security scanner & auditor which help telecom companies, operators and government analyze where and how their critical telecom network infrastructure can be attacked. He can be reached through his website at: http://www.p1security.com
- published: 24 May 2013
- views: 3171
LTE/LTE-A Interference Coordination for Femtocells
Abstract: Femto-cells promise substantial gains in system spectral efficiency due to an enhanced reuse of radio resources. Femto-cells maintain an exclusive lis...
Abstract: Femto-cells promise substantial gains in system spectral efficiency due to an enhanced reuse of radio resources. Femto-cells maintain an exclusive list of user equipments (UEs) that they serve. In this case, a
foreign macro UE trapped inside a femto-cell experiences heavy interference from this femto-cell. The first part of this talk investigates the issue of femto-to-macro interference on the control channel. The control channel is very crucial because if it is incorrectly decoded, the following data region is ompletely lost. Certain interference-mitigating techniques are introduced. The second part of the talk goes even deeper and analyses the problem of interference on one of the crucial control channels. A novel and backward-compatible (for LTE Rel.-8/9 UEs) interference reducing technique is introduced and is shown to perform very well.
Biography: Zubin Bharucha, born in Mumbai, India received his B.Sc. and M.Sc. degrees in Electrical Engineering and Computer Science from Jacobs University Bremen, Germany in 2005 and 2007, respectively. He then moved to Edinburgh to Scotland where he got his Ph.D. in Wireless Communications under the supervision of Dr. Harald Haas at the University of Edinburgh. The title of his thesis was "Ad hoc Wireless Networks with Femto-Cell Deployment: A Study". Since 2010, Zubin has worked as a researcher in the Wireless Research Group at DOCOMO Euro-Labs in Munich, Germany. He has been involved with 3GPP standardization as well as EU-funded research projects. His research interests cover the fields of ad hoc and cellular networks, interference alignment, resource management and energy-efficiency.
wn.com/Lte Lte A Interference Coordination For Femtocells
Abstract: Femto-cells promise substantial gains in system spectral efficiency due to an enhanced reuse of radio resources. Femto-cells maintain an exclusive list of user equipments (UEs) that they serve. In this case, a
foreign macro UE trapped inside a femto-cell experiences heavy interference from this femto-cell. The first part of this talk investigates the issue of femto-to-macro interference on the control channel. The control channel is very crucial because if it is incorrectly decoded, the following data region is ompletely lost. Certain interference-mitigating techniques are introduced. The second part of the talk goes even deeper and analyses the problem of interference on one of the crucial control channels. A novel and backward-compatible (for LTE Rel.-8/9 UEs) interference reducing technique is introduced and is shown to perform very well.
Biography: Zubin Bharucha, born in Mumbai, India received his B.Sc. and M.Sc. degrees in Electrical Engineering and Computer Science from Jacobs University Bremen, Germany in 2005 and 2007, respectively. He then moved to Edinburgh to Scotland where he got his Ph.D. in Wireless Communications under the supervision of Dr. Harald Haas at the University of Edinburgh. The title of his thesis was "Ad hoc Wireless Networks with Femto-Cell Deployment: A Study". Since 2010, Zubin has worked as a researcher in the Wireless Research Group at DOCOMO Euro-Labs in Munich, Germany. He has been involved with 3GPP standardization as well as EU-funded research projects. His research interests cover the fields of ad hoc and cellular networks, interference alignment, resource management and energy-efficiency.
- published: 17 Feb 2012
- views: 6341
Femto LTE-A Hardware Design Challenges
Abstract: 3GPP Release 10, better known as LTE-Advanced, answers the increasing users demand of traffic and throughput. Its target peak data rates of 1Gbps in d...
Abstract: 3GPP Release 10, better known as LTE-Advanced, answers the increasing users demand of traffic and throughput. Its target peak data rates of 1Gbps in downlink and 500Mbps in the uplink requires bandwidths wider than 20MHz, foreseen for LTE. The use of more efficient modulations and mainly, the bandwidth extension to 100MHz (achieved through carrier aggregation), puts a lot of pressure on the LTE-A hardware. Cost, size and consumption reduction gives an additional turn of the screw. In this talk it will be shown main features of LTE-A thus the stringent technical requirements to be fulfilled by LTE-A compliant hardware as a consequence of these features. It will be also analyzed the key building blocks affected by these requirements and how it is affected the architecture and conception of the physical layer for facing all of these challenges.
Biography: Mariano López is a senior RF engineer, graduated in telecommunications engineering in 1997 by the University of Cantabria (Spain), and working for TTI since 2000. He has been manager of several R&D; and commercial projects in the RF domain, devoted to develop customized equipment (RF transceivers, HPAs, LNAs, filters, etc) based on customer requirements at different frequency bands. He is currently involved in EC BeFEMTO project by leading one of its work packages.
Normal 0 false false false EN-US X-NONE X-NONE
Broadband services play a crucial role in stimulating and fuelling world's economy and given the uncertain economic environment of the globe and recession fears and realities, it is becoming increasingly obvious that in order to convert negative growth to positive, broadband bases needs to be expanded more widely. This is where ubiquitous broadband femto cells naturally fit in and provide a bridge to fixed wireline and mobile cellular broadband technologies enabling a kind of fixed-cellular convergence. One of the biggest technical drivers of broadband femto cell technology is their ability to allow significant spatial reuse of spectrum resulting in enhanced capacity of the system without huge investment into expensive network infrastructure. Thus, femto cells continue this proven method for capacity increase to a new unprecedented level and they do it in an efficient manner, because these are low power and low cost small devices kept in user premises (also called Home Base Stations) and connected to the cellular network via a broadband connection over digital subscriber line (DSL), cable modem or through fibre optic lines. Femto cells have the capability to off-load the burden from the cellular networks thereby enabling them to better optimise their performance and focus on problematic coverage areas. This also helps operators to have savings on network operational costs. In contrast to conventional requirement of dual-mode handsets to provide both in-home and mobile services, femto cell technology enables the use of existing handsets promising a true fixed-mobile convergence. This talk will thus review the emerging scenarios, growth, business case, and latest industrial tendencies related to femto cells. It will serve as an introduction to the technical talks over subsequent days during this femto school.
wn.com/Femto Lte A Hardware Design Challenges
Abstract: 3GPP Release 10, better known as LTE-Advanced, answers the increasing users demand of traffic and throughput. Its target peak data rates of 1Gbps in downlink and 500Mbps in the uplink requires bandwidths wider than 20MHz, foreseen for LTE. The use of more efficient modulations and mainly, the bandwidth extension to 100MHz (achieved through carrier aggregation), puts a lot of pressure on the LTE-A hardware. Cost, size and consumption reduction gives an additional turn of the screw. In this talk it will be shown main features of LTE-A thus the stringent technical requirements to be fulfilled by LTE-A compliant hardware as a consequence of these features. It will be also analyzed the key building blocks affected by these requirements and how it is affected the architecture and conception of the physical layer for facing all of these challenges.
Biography: Mariano López is a senior RF engineer, graduated in telecommunications engineering in 1997 by the University of Cantabria (Spain), and working for TTI since 2000. He has been manager of several R&D; and commercial projects in the RF domain, devoted to develop customized equipment (RF transceivers, HPAs, LNAs, filters, etc) based on customer requirements at different frequency bands. He is currently involved in EC BeFEMTO project by leading one of its work packages.
Normal 0 false false false EN-US X-NONE X-NONE
Broadband services play a crucial role in stimulating and fuelling world's economy and given the uncertain economic environment of the globe and recession fears and realities, it is becoming increasingly obvious that in order to convert negative growth to positive, broadband bases needs to be expanded more widely. This is where ubiquitous broadband femto cells naturally fit in and provide a bridge to fixed wireline and mobile cellular broadband technologies enabling a kind of fixed-cellular convergence. One of the biggest technical drivers of broadband femto cell technology is their ability to allow significant spatial reuse of spectrum resulting in enhanced capacity of the system without huge investment into expensive network infrastructure. Thus, femto cells continue this proven method for capacity increase to a new unprecedented level and they do it in an efficient manner, because these are low power and low cost small devices kept in user premises (also called Home Base Stations) and connected to the cellular network via a broadband connection over digital subscriber line (DSL), cable modem or through fibre optic lines. Femto cells have the capability to off-load the burden from the cellular networks thereby enabling them to better optimise their performance and focus on problematic coverage areas. This also helps operators to have savings on network operational costs. In contrast to conventional requirement of dual-mode handsets to provide both in-home and mobile services, femto cell technology enables the use of existing handsets promising a true fixed-mobile convergence. This talk will thus review the emerging scenarios, growth, business case, and latest industrial tendencies related to femto cells. It will serve as an introduction to the technical talks over subsequent days during this femto school.
- published: 17 Feb 2012
- views: 1561
8x8 MIMO and Carrier Aggregation Test Challenges for LTE 20130425 1320 1
The complexity of MIMO designs, driven by the new LTE standards, is further increased as MIMO systems scale up to 8x8 configurations. Moreover, other requiremen...
The complexity of MIMO designs, driven by the new LTE standards, is further increased as MIMO systems scale up to 8x8 configurations. Moreover, other requirements such as beamforming and carrier aggregation drive the need for test solutions that provide deep insight within these multiple domains. Engineers who design and test advanced base stations, handsets and chipsets are looking for integrated solutions to model, implement and characterize their design. This presentation will review how the new standards will impact base station design methodologies and highlight some measurement challenges driven by the emergence and deployment of 8x8 MIMO. These new measurement requirements drive the need for scalable hardware and software solutions, which will be presented with real measurement examples.
Get resources on 3GPP LTE and other wireless technologies synthesis from Keysight
www.keysight.com/find/LTE-forward
wn.com/8X8 Mimo And Carrier Aggregation Test Challenges For Lte 20130425 1320 1
The complexity of MIMO designs, driven by the new LTE standards, is further increased as MIMO systems scale up to 8x8 configurations. Moreover, other requirements such as beamforming and carrier aggregation drive the need for test solutions that provide deep insight within these multiple domains. Engineers who design and test advanced base stations, handsets and chipsets are looking for integrated solutions to model, implement and characterize their design. This presentation will review how the new standards will impact base station design methodologies and highlight some measurement challenges driven by the emergence and deployment of 8x8 MIMO. These new measurement requirements drive the need for scalable hardware and software solutions, which will be presented with real measurement examples.
Get resources on 3GPP LTE and other wireless technologies synthesis from Keysight
www.keysight.com/find/LTE-forward
- published: 05 Aug 2014
- views: 366
HotSeat Episode 5: Envelope Tracking Technology
WDD's video series, the HotSeat, features design engineers and professionals who are interviewed on exclusive products, trends, and important issues that are oc...
WDD's video series, the HotSeat, features design engineers and professionals who are interviewed on exclusive products, trends, and important issues that are occurring within the wireless community.
Pete Cain, the wireless solution planner for the Microwave and Communications division of the Electronic Measurements Group at Agilent Technologies, discusses the benefits of using envelope tracking, an approach to RF amplifier design in which the power supply voltage applied to the power amplifier is constantly adjusted to ensure that the amplifier is operating at peak efficiency for the given instantaneous output power requirements.
Pete also discusses how envelope sets the standards for future developments of amplifiers and the role that Agilent will play among these particular developments.
For more information on Agilent Technologies, visit https://www.agilent.com.
For additional information on envelope tracking and the industry, click on the following links:
--"Solutions and Measurement Tools for Use in Average Power and Envelope Tracking Design" guide. https://www.home.agilent.com/agilent/editorial.jspx?cc=US&lc;=eng&ckey;=2290845&id;=2290845&cmpid;=zzfindlte-forward
--ADS PA Design Series Part 5: Envelope Tracking Simulation & Analysis [Andy Howard] http://www.home.agilent.com/agilent/eventDetail.jspx?cc=GB&lc;=eng&ckey;=2192958&nid;=-34360.0&id;=2192958
--ADS Innovations in EDA Beyond CMOS vs GaAs -- Finding the Best Technology Mix for a Handset PA [Matthew Ozalas] http://www.home.agilent.com/agilent/eventDetail.jspx?cc=FR&lc;=fre&ckey;=2283882&nid;=-11143.0.00&id;=2283882
Complimentary resources (posters, CDs, app notes and more) available to support your LTE development process, visit:
-- Learn more about Long-Term Evolution (LTE) test and equipment from Agilent: https://www.agilent.com/find/lte
-- Learn more about LTE-Advanced test and design from Agilent: https://www.agilent.com/find/lte-a
-- Learn about 3GPP LTE and other Wireless technologies with these useful resources you can order and download today: https://www.agilent.com/find/Cellular-Forward
-- Learn about New LTE-Advanced with these useful resources you can order and download today: https://www.agilent.com/find/lte-a-insight
Additional information:
-- View archived webcasts in the LTE series and watch anytime: https://www.agilent.com/find/LTEwebcasts
-- Learn more about the Agilent PXT Wireless Communications Test Set: https://www.agilent.com/find/PXT
-- Learn more about the Agilent PXB Baseband Generator and Channel Emulator: https://www.agilent.com/find/PXB
-- Learn more about the Agilent MXA Signal Analyzer: https://www.agilent.com/find/MXA
-- Learn more about the Agilent X-Series Signal Generators (MXG, EXG): https://www.agilent.com/find/MXG
-- Learn about LTE and its measurements in the LTE book written by 42 LTE experts: https://www.agilent.com/find/LTEbook
Interested in participating on the HotSeat? Contact meaghan.ziemba@advantagemedia.com.
wn.com/Hotseat Episode 5 Envelope Tracking Technology
WDD's video series, the HotSeat, features design engineers and professionals who are interviewed on exclusive products, trends, and important issues that are occurring within the wireless community.
Pete Cain, the wireless solution planner for the Microwave and Communications division of the Electronic Measurements Group at Agilent Technologies, discusses the benefits of using envelope tracking, an approach to RF amplifier design in which the power supply voltage applied to the power amplifier is constantly adjusted to ensure that the amplifier is operating at peak efficiency for the given instantaneous output power requirements.
Pete also discusses how envelope sets the standards for future developments of amplifiers and the role that Agilent will play among these particular developments.
For more information on Agilent Technologies, visit https://www.agilent.com.
For additional information on envelope tracking and the industry, click on the following links:
--"Solutions and Measurement Tools for Use in Average Power and Envelope Tracking Design" guide. https://www.home.agilent.com/agilent/editorial.jspx?cc=US&lc;=eng&ckey;=2290845&id;=2290845&cmpid;=zzfindlte-forward
--ADS PA Design Series Part 5: Envelope Tracking Simulation & Analysis [Andy Howard] http://www.home.agilent.com/agilent/eventDetail.jspx?cc=GB&lc;=eng&ckey;=2192958&nid;=-34360.0&id;=2192958
--ADS Innovations in EDA Beyond CMOS vs GaAs -- Finding the Best Technology Mix for a Handset PA [Matthew Ozalas] http://www.home.agilent.com/agilent/eventDetail.jspx?cc=FR&lc;=fre&ckey;=2283882&nid;=-11143.0.00&id;=2283882
Complimentary resources (posters, CDs, app notes and more) available to support your LTE development process, visit:
-- Learn more about Long-Term Evolution (LTE) test and equipment from Agilent: https://www.agilent.com/find/lte
-- Learn more about LTE-Advanced test and design from Agilent: https://www.agilent.com/find/lte-a
-- Learn about 3GPP LTE and other Wireless technologies with these useful resources you can order and download today: https://www.agilent.com/find/Cellular-Forward
-- Learn about New LTE-Advanced with these useful resources you can order and download today: https://www.agilent.com/find/lte-a-insight
Additional information:
-- View archived webcasts in the LTE series and watch anytime: https://www.agilent.com/find/LTEwebcasts
-- Learn more about the Agilent PXT Wireless Communications Test Set: https://www.agilent.com/find/PXT
-- Learn more about the Agilent PXB Baseband Generator and Channel Emulator: https://www.agilent.com/find/PXB
-- Learn more about the Agilent MXA Signal Analyzer: https://www.agilent.com/find/MXA
-- Learn more about the Agilent X-Series Signal Generators (MXG, EXG): https://www.agilent.com/find/MXG
-- Learn about LTE and its measurements in the LTE book written by 42 LTE experts: https://www.agilent.com/find/LTEbook
Interested in participating on the HotSeat? Contact meaghan.ziemba@advantagemedia.com.
- published: 17 Jul 2013
- views: 427
MIMO
In radio, multiple-input and multiple-output, or MIMO (pronounced as "my-moh" and/or "me-moh"), is the use of multiple antennas at both the transmitter and rece...
In radio, multiple-input and multiple-output, or MIMO (pronounced as "my-moh" and/or "me-moh"), is the use of multiple antennas at both the transmitter and receiver to improve communication performance. It is one of several forms of smart antenna technology.
MIMO technology has attracted attention in wireless communications, because it offers significant increases in data throughput and link range without additional bandwidth or increased transmit power. It achieves this goal by spreading the same total transmit power over the antennas to achieve an array gain that improves the spectral efficiency (more bits per second per hertz of bandwidth) and/or to achieve a diversity gain that improves the link reliability (reduced fading). Because of these properties, MIMO is an important part of modern wireless communication standards such as IEEE 802.11n (Wi-Fi), 4G, 3GPP Long Term Evolution, WiMAX and HSPA+. More recently MIMO signal processing has also found its way into power line communications (PLC) as part of standard ITU G.hn and specification HomePlug AV2.
This video is targeted to blind users.
Attribution:
Article text available under CC-BY-SA
Creative Commons image source in video
wn.com/Mimo
In radio, multiple-input and multiple-output, or MIMO (pronounced as "my-moh" and/or "me-moh"), is the use of multiple antennas at both the transmitter and receiver to improve communication performance. It is one of several forms of smart antenna technology.
MIMO technology has attracted attention in wireless communications, because it offers significant increases in data throughput and link range without additional bandwidth or increased transmit power. It achieves this goal by spreading the same total transmit power over the antennas to achieve an array gain that improves the spectral efficiency (more bits per second per hertz of bandwidth) and/or to achieve a diversity gain that improves the link reliability (reduced fading). Because of these properties, MIMO is an important part of modern wireless communication standards such as IEEE 802.11n (Wi-Fi), 4G, 3GPP Long Term Evolution, WiMAX and HSPA+. More recently MIMO signal processing has also found its way into power line communications (PLC) as part of standard ITU G.hn and specification HomePlug AV2.
This video is targeted to blind users.
Attribution:
Article text available under CC-BY-SA
Creative Commons image source in video
- published: 21 Aug 2014
- views: 1267
Rohde & Schwarz webinar: Introduction to LTE UE RF measurements
LTE (long term evolution) is an advanced and complex technology that uses two different transmission schemes in the downlink and the uplink. LTE also specifies ...
LTE (long term evolution) is an advanced and complex technology that uses two different transmission schemes in the downlink and the uplink. LTE also specifies the support of different frequency bands, a subset of six bandwidths and different modes (FDD and TDD) - a challenge for chipset vendors and device manufacturers alike. In addition, the support of the multi-antenna technology known as MIMO (multiple input multiple output) is mandatory for LTE. All these features call for a lot of testing. Especially now, when the first devices are leaving the labs and are close to reaching a commercial stage, the focus is on RF testing for LTE.
This webinar shows which types of RF measurements have been defined for LTE-capable UE (user equipment), explains their meaning and describes how they can be performed using the R&S;®CMW500 wideband radio communication tester - in connected mode of course.
For more LTE webinars from Rohde & Schwarz, see:
http://www.rohde-schwarz.com/en/solutions/wireless-communications/lte/lte-webinars/webinars-overview_53570.html
For further information, see:
http://www.rohde-schwarz.com/technology/lte
http://www.rohde-schwarz.com/product/CMW500_overview
wn.com/Rohde Schwarz Webinar Introduction To Lte Ue Rf Measurements
LTE (long term evolution) is an advanced and complex technology that uses two different transmission schemes in the downlink and the uplink. LTE also specifies the support of different frequency bands, a subset of six bandwidths and different modes (FDD and TDD) - a challenge for chipset vendors and device manufacturers alike. In addition, the support of the multi-antenna technology known as MIMO (multiple input multiple output) is mandatory for LTE. All these features call for a lot of testing. Especially now, when the first devices are leaving the labs and are close to reaching a commercial stage, the focus is on RF testing for LTE.
This webinar shows which types of RF measurements have been defined for LTE-capable UE (user equipment), explains their meaning and describes how they can be performed using the R&S;®CMW500 wideband radio communication tester - in connected mode of course.
For more LTE webinars from Rohde & Schwarz, see:
http://www.rohde-schwarz.com/en/solutions/wireless-communications/lte/lte-webinars/webinars-overview_53570.html
For further information, see:
http://www.rohde-schwarz.com/technology/lte
http://www.rohde-schwarz.com/product/CMW500_overview
- published: 18 Nov 2011
- views: 12511
Rohde & Schwarz webinar: Challenges in testing multi-standard radio base stations
This webinar provides an overview of new developments in the design of mobile radio base stations. It explains the new transmitter test requirements according t...
This webinar provides an overview of new developments in the design of mobile radio base stations. It explains the new transmitter test requirements according to 3GPP TS 37.141 and demonstrates an efficient way of how to troubleshoot multi-standard base stations beyond these requirements using a modern signal and spectrum analyzer from Rohde & Schwarz.
The introduction of latest mobile radio standards such as LTE on top of existing networks, like WCDMA and GSM, is a challenge to operators in terms of costs for space, spectrum, power, and operation and maintenance. Multi-standard radio base stations are being introduced to handle these challenges.
Attendees will learn:
- Test requirements for multi-standard radio base station transmitters according to 3GPP TS 37.141 and beyond
- Efficient analysis of multi-standard radio signals and the interference between the different signals
For more LTE webinars from Rohde & Schwarz, see:
http://www.rohde-schwarz.com/en/solutions/wireless-communications/lte/lte-webinars/webinars-overview_53570.html
wn.com/Rohde Schwarz Webinar Challenges In Testing Multi Standard Radio Base Stations
This webinar provides an overview of new developments in the design of mobile radio base stations. It explains the new transmitter test requirements according to 3GPP TS 37.141 and demonstrates an efficient way of how to troubleshoot multi-standard base stations beyond these requirements using a modern signal and spectrum analyzer from Rohde & Schwarz.
The introduction of latest mobile radio standards such as LTE on top of existing networks, like WCDMA and GSM, is a challenge to operators in terms of costs for space, spectrum, power, and operation and maintenance. Multi-standard radio base stations are being introduced to handle these challenges.
Attendees will learn:
- Test requirements for multi-standard radio base station transmitters according to 3GPP TS 37.141 and beyond
- Efficient analysis of multi-standard radio signals and the interference between the different signals
For more LTE webinars from Rohde & Schwarz, see:
http://www.rohde-schwarz.com/en/solutions/wireless-communications/lte/lte-webinars/webinars-overview_53570.html
- published: 01 Aug 2013
- views: 471
Rohde & Schwarz webinar: LTE UE RF measurements - reloaded
Are you familiar with PRACH measurements? And what about power dynamics? This Rohde & Schwarz webinar from March 2011 focuses on the amendments made to 3GPP TS ...
Are you familiar with PRACH measurements? And what about power dynamics? This Rohde & Schwarz webinar from March 2011 focuses on the amendments made to 3GPP TS 36.521-1 and explains the enhanced test definitions. The webinar illustrates on the Rohde & Schwarz CMW500 wideband radio communication tester how the specified RF test cases can be performed and automated, and how the results can be interpreted.
The webinar is based on the previous webinar "Introduction to LTE UE RF measurements": http://www.youtube.com/watch?v=zVZ08IUHjGs
For more LTE webinars from Rohde & Schwarz, see:
http://www.rohde-schwarz.com/en/solutions/wireless-communications/lte/lte-webinars/webinars-overview_53570.html
wn.com/Rohde Schwarz Webinar Lte Ue Rf Measurements Reloaded
Are you familiar with PRACH measurements? And what about power dynamics? This Rohde & Schwarz webinar from March 2011 focuses on the amendments made to 3GPP TS 36.521-1 and explains the enhanced test definitions. The webinar illustrates on the Rohde & Schwarz CMW500 wideband radio communication tester how the specified RF test cases can be performed and automated, and how the results can be interpreted.
The webinar is based on the previous webinar "Introduction to LTE UE RF measurements": http://www.youtube.com/watch?v=zVZ08IUHjGs
For more LTE webinars from Rohde & Schwarz, see:
http://www.rohde-schwarz.com/en/solutions/wireless-communications/lte/lte-webinars/webinars-overview_53570.html
- published: 01 Jun 2012
- views: 3962
Formal Analysis of Security Procedures in LTE - A Feasibility Study; Noomene Ben Henda; Karl Norrman
Formal Analysis of Security Procedures in LTE - A Feasibility Study; Noomene Ben Henda; Karl Norrman
The only part of the Long Term Evolution (LTE) security st...
Formal Analysis of Security Procedures in LTE - A Feasibility Study; Noomene Ben Henda; Karl Norrman
The only part of the Long Term Evolution (LTE) security standard that has been formally analyzed is the Authentication and Key Agreement (AKA) procedure. It is not clear how well existing security related verification tools can handle other types of procedures. In this work, we use ProVerif to analyze the procedures related to session management and mobility. Our analysis has shown that most of the secrecy and agreement properties hold which was expected. However, we had difficulties proving stronger injective agreement properties.
wn.com/Formal Analysis Of Security Procedures In Lte A Feasibility Study Noomene Ben Henda Karl Norrman
Formal Analysis of Security Procedures in LTE - A Feasibility Study; Noomene Ben Henda; Karl Norrman
The only part of the Long Term Evolution (LTE) security standard that has been formally analyzed is the Authentication and Key Agreement (AKA) procedure. It is not clear how well existing security related verification tools can handle other types of procedures. In this work, we use ProVerif to analyze the procedures related to session management and mobility. Our analysis has shown that most of the secrecy and agreement properties hold which was expected. However, we had difficulties proving stronger injective agreement properties.
- published: 02 Oct 2014
- views: 550
Live Webcast: Wireless Mobility-How You Cellular Phone Surfs the Internet
During this event you will get an overview of long term evolution (LTE) and a detailed explanation of the subscriber call flow with Cisco expert Deepak Michael....
During this event you will get an overview of long term evolution (LTE) and a detailed explanation of the subscriber call flow with Cisco expert Deepak Michael. He will explain common mobile wireless terminology; the fundamentals of LTE; and how a Packet Data Protocol (PDP) context is created, beginning with the end user powering a mobile device to surfing the web.
For more info on this topic, visit:https://supportforums.cisco.com/community/netpro/wireless-mobility?referring_site=YouTube&channel;=video
wn.com/Live Webcast Wireless Mobility How You Cellular Phone Surfs The Internet
During this event you will get an overview of long term evolution (LTE) and a detailed explanation of the subscriber call flow with Cisco expert Deepak Michael. He will explain common mobile wireless terminology; the fundamentals of LTE; and how a Packet Data Protocol (PDP) context is created, beginning with the end user powering a mobile device to surfing the web.
For more info on this topic, visit:https://supportforums.cisco.com/community/netpro/wireless-mobility?referring_site=YouTube&channel;=video
- published: 15 Mar 2013
- views: 3645
LTE and the Broadcast Industry: An Overview and Outlook
This session will provide the high level view on LTE Broadcast (Long Term Evolution Broadcast), also known as eMBMS (Evolved Multimedia Broadcast Multicast Syst...
This session will provide the high level view on LTE Broadcast (Long Term Evolution Broadcast), also known as eMBMS (Evolved Multimedia Broadcast Multicast System). We will discuss the way LTE broadcast enables mass distribution of content, both for live streams as well as file delivery service like pre-loading of in-device caches so that users have offline access to the content.
Session Format:
15-minute presentation from Vera Kenehan
45-minute panel
Moderator
• Simon Frost, Head of Media Marketing, Ericsson
Panelists
• Vera Kenehan, Strategic Product Manager, LTE Broadcast, Ericsson
• Dr. Thorsten Lohmar, Expert - Media Delivery Architecture, Ericsson
• Ed Tiongson, Director, Product Management, Qualcomm Technologies, Inc.
http://www.nabshow.com/2014/about/overview/nab-annual-events/mobile-world-congress/sessions/
wn.com/Lte And The Broadcast Industry An Overview And Outlook
This session will provide the high level view on LTE Broadcast (Long Term Evolution Broadcast), also known as eMBMS (Evolved Multimedia Broadcast Multicast System). We will discuss the way LTE broadcast enables mass distribution of content, both for live streams as well as file delivery service like pre-loading of in-device caches so that users have offline access to the content.
Session Format:
15-minute presentation from Vera Kenehan
45-minute panel
Moderator
• Simon Frost, Head of Media Marketing, Ericsson
Panelists
• Vera Kenehan, Strategic Product Manager, LTE Broadcast, Ericsson
• Dr. Thorsten Lohmar, Expert - Media Delivery Architecture, Ericsson
• Ed Tiongson, Director, Product Management, Qualcomm Technologies, Inc.
http://www.nabshow.com/2014/about/overview/nab-annual-events/mobile-world-congress/sessions/
- published: 27 Feb 2014
- views: 825