SlideShare a Scribd company logo
1 of 45
Introduction to
No more Codes
Key technologies….
For Downlink : OFDM and MIMO

For Uplink : SC - FDMA
Topics to discuss…
IMT – Advanced Requirements
 Support for at least 40 MHz Bandwidth

 Peak Spectral Efficiencies :
    DL : 15 bits/s/Hz (600 Mbps)
    UL : 6.75 bits/s/Hz(270 Mbps)

 Control Plane Latency < 100ms
 User Plane Latency < 10ms
Releases of 3GPP Specifications


     Rel. 8     LTE         EPC/SAE


              Location                       Multi-
     Rel.9    Services
                              MBMS        Standard BS




    Rel.10      LTE - A
                              Carrier
                            Aggregation
                                            Relays



               Enhanced      Intra Band
     Rel.11     Carrier
              Aggregation
                               Carrier
                            Aggregation
System Architecture Evolution (SAE)
From 3G to 4G…

 UTRAN in 3G,
E-UTRAN in 4G

 CN in 3G, EPC in
  4G

 NodeB in 3G,
  E-NodeB in 4G

 No RNC as in 3G

 RNC tasks perform
  by eNodeB and
  EPC
LTE/SAE Network
                                                                         Internet
 Architecture
                                                             P-GW
                      HSS
                    MME                 S-GW                                 EPC
                                                                    S5
                         S6a
MME/S-GW                                                      MME/S-GW




           S1       S1                          S1      S1




                                 X2
                                                                            E-UTRAN
                         X2                X2
           eNodeB                                    eNodeB




                               eNodeB
Evolved UTRAN (E-UTRAN)
 eNodeB :

    Directly connected to the Core via S1 interface
    No RNC as in WCDMA
    eNodeBs interconnected via X2 interface
    Handovers are handled by eNodeBs it self, communicating via X2
     interface
    This is an intelligent Node

Evolved Packet Core (EPC)
Supports only packet switched domain only
 Mobility Management Entity (MME) :

      Control Plane Node of the EPC
      handling connection/release of bearers to a terminal
      handling of IDLE to ACTIVE Transition
      handling of security keys
 Serving Gateway(S-GW) :

      User plane node which connects EPC to E-UTRAN
      Acts as a mobility anchor when Terminals move between eNodeBs
      Mobility Anchor for other 3GPP technologies (GSM,HSPA)
      Collecting information for charging purposes



 Packet Data Network Gateway (P-GW) :
      Connects EPC to the Internet
      Allocation of the IP address for a specific terminal
      QoS handling



 Home Subscriber Service (HSS) :
    A database containing subscriber information
What is Orthogonal Frequency
Division Multiplexing (OFDM) ?
OFDM
Why ?
ISI – Inter Symbol Interference

Time domain :




       Data Rate    ISI
Time Spreading (Freq. Selective
Fading)

• When an impulse is transmitted , how
does the average power received by         Power Delay Profile
Mobile
 vary as a function of time delay ζ ?



 Freq. Selective Fading : Ts   < ζ0

 Non Freq. Selective Fading : Ts   > ζ0
Power Delay Profile                      Spaced Freq.
                                             Correlation function



                                  FT




Inside Coherence BW channel passes all freq. components with
equal gain and linear phase
 Freq. Selective Fading : W    > f0
 Non Freq. Selective Fading   : W < f0
• Symbol rate not increased in order to achieve high data
  rates.
• Instead of that Available BW breaks in to many narrower
  subcarriers and modulate generated symbols to these
  subcarriers.
• These subcarriers then combine linearly and transmit
  (OFDM symbol).




        OFDM Modulation            OFDM demodulation
Single carrier transmission Vs OFDM
Transmission

                               : Single Carrier
           1       0   1       Transmission



               1

                               : OFDM Transmission
               0




               1


                           t
Sub carrier Pulse shape and Spectrum




       Subcarrier BW < Coherance BW
Why “Orthogonal” ?




  Subcarriers “Orthogonal” in the time domain

In OFDM, Subcarriers are overlapped in Frequency
domain while maintaining orthogonality in time domain
Overlapping subcarriers in Freq.
domain




   Overlapping Subcarriers   Spectral Efficiency
OFDM Symbol
 • Generated by Multiplexing several overlapping
   subcarriers and a Cyclic Prefix (CP).




         CP              Modulated Subcarriers

 • Cyclic Prefix added to the beginning of the OFDM
   symbol in order to eliminate IBI
 • At the Receiver CP is removed and only the information
   bearing part is further processed .
OFDM as a Multiple Access Scheme
(OFDMA)




 OFDMA : In each OFDM symbol interval, Different
  subsets of the overall set of available subcarriers are
  used for transmission to different terminals.
What is Multiple-Input Multiple-
Output (MIMO) ?
Main Transmission Techniques

Spatial Diversity : Signal copies are transmitted at
    multiple antennas or received at more than one antenna


.




 Spatial Multiplexing : Transmit independent and
     separately encoded data streams over different antennas
Why MIMO?
  Significant increase in Spectral efficiency and data
   rates - Spatial Multiplexing
  High QoS - Spatial diversity
  Wide Coverage - Spatial diversity
Received signal y at the receiver when signal x is transmitted,
What is Single Carrier FDMA
(SC – FDMA)?
SC – FDMA (DFTS-OFDM)
Why not Multi Carrier OFDM in Uplink ?
 One of the main drawbacks in OFDM : Large instantaneous
  power variations in the Transmitting signal
 This leads to High Peak-to-Average-Power Ratio (PAPR) in
  the Power Amplifier.

             Power Amplifier Efficiency

             Power Amplifier Cost


   Hence Multicarrier OFDM is not a Viable solution for Low
                       power Mobiles
 In OFDM, each subcarrier carries information relating
  to one specific Symbol
 In SC-FDMA, each subcarrier contains information of
  All Transmitted symbols.
 Hence no need of transmitting with High Power. Signal
  energy is distributed among sub carriers.
User Multiplexing in SC-FDMA
  Localized Transmission :             Distributed Transmission :




User 1   User 2   User 3      User 1   User 2   User 3
LTE Physical Layer

Overall RAN Protocol Architecture
LTE Physical Layer Processing
Available DL BW and Physical Resource Blocks
(PRBs)

Bandwidth (MHz)        1.25   2.5   5.0         10.0   15.0   20.0


Subcarrier BW (kHz)                       15


PRB BW (kHz)                              180


No. of available RBs    6     12    25          50      75    100
Generic Frame Structure
                             1 Frame (10 ms)




                             1 Slot (0.5 ms)


    0     1     2                   n                      18   19

    1 Sub Frame (1 ms)


                     0   1      2       3      4   5   6

                              7 OFDM symbols
Resource Grid      7 OFDM symbols

           Time
F
R
E
q
       R
       E
       S
       O
       U
       R
       C                            R
       E                            E
                                    S
       B                            O
       L                            U
       O                            R
       C                            C
       K                            E

                                    G
                                    R
                                    I
                                    D
Resource Element
 Physical Resource Block (PRB) allocation is done by the
  scheduling function in eNodeB

 PRB is the smallest element of resource allocation
  assigned by the base station scheduler.
LTE Radio Access : An Overview
 Channel dependent Scheduling and Rate adaptation :
   Depending on the channel conditions, time – frequency resources
    are allocated to users by the scheduler
   Scheduling decisions taken once every 1ms with frequency
    domain granularity of 180 kHz.
   Scheduler allocates resources depending on the Channel State
    Information(CSI) provided by the UE
 Inter Cell interference Coordination (ICIC) :
     In LTE, Frequency Reuse Factor equals to one (full spectrum
      availability at each Cell)
     This leads to high performance degradation specially the Users in
      cell edge.
     ICIC reduce ICI at cell edge applying certain restrictions on
      resource assignment.
Adaptive Fractional Frequency Reuse
Coordination:
                              3




                    1




                              2



                                            Inner Region


                                            Outer Region
 Multicast / Broadcast Single frequency Network
  (MBSFN)




 As Identical information is transmitted from transmitters (time aligned),
  UEs in Cell edge can utilize received power of several surrounding
  cells to detect / decode broadcasted data.
Special Features in LTE – A (Rel.10)
Carrier Aggregation :




              Relaying:
Extended Multi Antenna Transmission :

    DL Spatial Multiplexing has been expanded to support up to 8
     transmission Layers.


Heterogeneous Deployments :
Ex : Pico Cell placed inside a Macro Cell
Heterogeneous Networks
References :

 . “4G LTE/LTE-Advanced for Mobile Broadband” by Erik
  Dhalman, Stefan Parkvall, Johan Skold

 “Overview of the 3GPP Long Term Evolution Physical Layer ”
  by Jim Zyren, Dr.Wes McCoy

 “Wireless Communication” by Andrea Goldsmith
THANK YOU!



     Nadisanka Rupasinghe
     Engineer – Network Optimization

More Related Content

What's hot

LTE Call Processing and Handover
LTE Call Processing and HandoverLTE Call Processing and Handover
LTE Call Processing and HandoverSitha Sok
 
2G / 3G / 4G / IMS / 5G Overview with Focus on Core Network
2G / 3G / 4G / IMS / 5G Overview with Focus on Core Network2G / 3G / 4G / IMS / 5G Overview with Focus on Core Network
2G / 3G / 4G / IMS / 5G Overview with Focus on Core NetworkHamidreza Bolhasani
 
lte physical layer overview
 lte physical layer overview lte physical layer overview
lte physical layer overviewPraveen Kumar
 
Lte Presentation.Ppt
Lte Presentation.PptLte Presentation.Ppt
Lte Presentation.Pptvaimalik
 
LTE ADVANCED PPT
LTE ADVANCED PPTLTE ADVANCED PPT
LTE ADVANCED PPTTrinath
 
Call flow and MS attach in LTE
Call flow and MS attach in LTECall flow and MS attach in LTE
Call flow and MS attach in LTEShashank Asthana
 
LTE - Long Term Evolution
LTE - Long Term EvolutionLTE - Long Term Evolution
LTE - Long Term EvolutionArief Gunawan
 
LTE Architecture
LTE ArchitectureLTE Architecture
LTE ArchitectureManje Gowda
 
Simplified Call Flow Signaling: 2G/3G Voice Call
Simplified Call Flow Signaling: 2G/3G Voice CallSimplified Call Flow Signaling: 2G/3G Voice Call
Simplified Call Flow Signaling: 2G/3G Voice Call3G4G
 
LTE network: How it all comes together architecture technical poster
LTE network: How it all comes together architecture technical posterLTE network: How it all comes together architecture technical poster
LTE network: How it all comes together architecture technical posterDavid Swift
 
volte ims network architecture
volte ims network architecturevolte ims network architecture
volte ims network architectureVikas Shokeen
 
4 g LTE, LTE Advance
4 g LTE, LTE Advance 4 g LTE, LTE Advance
4 g LTE, LTE Advance Sajid Marwat
 
Training document e ran2.2_lte tdd system multiple antenna techniques(mimo an...
Training document e ran2.2_lte tdd system multiple antenna techniques(mimo an...Training document e ran2.2_lte tdd system multiple antenna techniques(mimo an...
Training document e ran2.2_lte tdd system multiple antenna techniques(mimo an...ProcExpl
 
What is SS7? An Introduction to Signaling System 7
What is SS7?  An Introduction to Signaling System 7What is SS7?  An Introduction to Signaling System 7
What is SS7? An Introduction to Signaling System 7Alan Percy
 
5G Network Architecture and Design
5G Network Architecture and Design5G Network Architecture and Design
5G Network Architecture and Design3G4G
 

What's hot (20)

2G & 3G Overview
2G & 3G Overview2G & 3G Overview
2G & 3G Overview
 
LTE Call Processing and Handover
LTE Call Processing and HandoverLTE Call Processing and Handover
LTE Call Processing and Handover
 
2G / 3G / 4G / IMS / 5G Overview with Focus on Core Network
2G / 3G / 4G / IMS / 5G Overview with Focus on Core Network2G / 3G / 4G / IMS / 5G Overview with Focus on Core Network
2G / 3G / 4G / IMS / 5G Overview with Focus on Core Network
 
VoLTE flows - basics
VoLTE flows - basicsVoLTE flows - basics
VoLTE flows - basics
 
lte physical layer overview
 lte physical layer overview lte physical layer overview
lte physical layer overview
 
Lte Presentation.Ppt
Lte Presentation.PptLte Presentation.Ppt
Lte Presentation.Ppt
 
LTE Advance Pro
LTE Advance ProLTE Advance Pro
LTE Advance Pro
 
LTE ADVANCED PPT
LTE ADVANCED PPTLTE ADVANCED PPT
LTE ADVANCED PPT
 
Gsm architecture
Gsm architecture Gsm architecture
Gsm architecture
 
5 g core overview
5 g core overview5 g core overview
5 g core overview
 
Call flow and MS attach in LTE
Call flow and MS attach in LTECall flow and MS attach in LTE
Call flow and MS attach in LTE
 
LTE - Long Term Evolution
LTE - Long Term EvolutionLTE - Long Term Evolution
LTE - Long Term Evolution
 
LTE Architecture
LTE ArchitectureLTE Architecture
LTE Architecture
 
Simplified Call Flow Signaling: 2G/3G Voice Call
Simplified Call Flow Signaling: 2G/3G Voice CallSimplified Call Flow Signaling: 2G/3G Voice Call
Simplified Call Flow Signaling: 2G/3G Voice Call
 
LTE network: How it all comes together architecture technical poster
LTE network: How it all comes together architecture technical posterLTE network: How it all comes together architecture technical poster
LTE network: How it all comes together architecture technical poster
 
volte ims network architecture
volte ims network architecturevolte ims network architecture
volte ims network architecture
 
4 g LTE, LTE Advance
4 g LTE, LTE Advance 4 g LTE, LTE Advance
4 g LTE, LTE Advance
 
Training document e ran2.2_lte tdd system multiple antenna techniques(mimo an...
Training document e ran2.2_lte tdd system multiple antenna techniques(mimo an...Training document e ran2.2_lte tdd system multiple antenna techniques(mimo an...
Training document e ran2.2_lte tdd system multiple antenna techniques(mimo an...
 
What is SS7? An Introduction to Signaling System 7
What is SS7?  An Introduction to Signaling System 7What is SS7?  An Introduction to Signaling System 7
What is SS7? An Introduction to Signaling System 7
 
5G Network Architecture and Design
5G Network Architecture and Design5G Network Architecture and Design
5G Network Architecture and Design
 

Similar to Introduction to LTE

Some questions and answers on lte radio interface
Some questions and answers on lte radio interfaceSome questions and answers on lte radio interface
Some questions and answers on lte radio interfaceThananan numatti
 
LTE introduction part1
LTE introduction part1LTE introduction part1
LTE introduction part1Pei-Che Chang
 
Concepts of 3GPP LTE.ppt
Concepts of 3GPP LTE.pptConcepts of 3GPP LTE.ppt
Concepts of 3GPP LTE.pptStefan Oprea
 
Performance Improvement of IEEE 802.22 WRAN Physical Layer
Performance Improvement of IEEE 802.22 WRAN Physical LayerPerformance Improvement of IEEE 802.22 WRAN Physical Layer
Performance Improvement of IEEE 802.22 WRAN Physical LayerIOSR Journals
 
Performance Improvement of IEEE 802.22 WRAN Physical Layer
Performance Improvement of IEEE 802.22 WRAN Physical LayerPerformance Improvement of IEEE 802.22 WRAN Physical Layer
Performance Improvement of IEEE 802.22 WRAN Physical LayerIOSR Journals
 
Performance Improvement of IEEE 802.22 WRAN Physical Layer
Performance Improvement of IEEE 802.22 WRAN Physical LayerPerformance Improvement of IEEE 802.22 WRAN Physical Layer
Performance Improvement of IEEE 802.22 WRAN Physical LayerIOSR Journals
 
Performance Analysis of Post Compensated Long Haul High Speed Coherent Optica...
Performance Analysis of Post Compensated Long Haul High Speed Coherent Optica...Performance Analysis of Post Compensated Long Haul High Speed Coherent Optica...
Performance Analysis of Post Compensated Long Haul High Speed Coherent Optica...IJECEIAES
 
Performance Analysis of Post Compensated Long Haul High Speed Coherent Optica...
Performance Analysis of Post Compensated Long Haul High Speed Coherent Optica...Performance Analysis of Post Compensated Long Haul High Speed Coherent Optica...
Performance Analysis of Post Compensated Long Haul High Speed Coherent Optica...Yayah Zakaria
 
LTE-Advanced Physical Layer
LTE-Advanced Physical LayerLTE-Advanced Physical Layer
LTE-Advanced Physical LayerPraveen Kumar
 
F01 beam forming_srs
F01 beam forming_srsF01 beam forming_srs
F01 beam forming_srsLuciano Motta
 
Samsung_EnodeLSMR__Integration_Module__V1.pdf (1).pdf
Samsung_EnodeLSMR__Integration_Module__V1.pdf (1).pdfSamsung_EnodeLSMR__Integration_Module__V1.pdf (1).pdf
Samsung_EnodeLSMR__Integration_Module__V1.pdf (1).pdfRaviSharma1113
 
Physical layer aspects (Matthew Baker: RAN WG1 Chair, Alcatel-Lucent)
Physical layer aspects (Matthew Baker: RAN WG1 Chair, Alcatel-Lucent) Physical layer aspects (Matthew Baker: RAN WG1 Chair, Alcatel-Lucent)
Physical layer aspects (Matthew Baker: RAN WG1 Chair, Alcatel-Lucent) BP Tiwari
 
LTE Physical layer aspects
LTE Physical layer aspectsLTE Physical layer aspects
LTE Physical layer aspectsBP Tiwari
 

Similar to Introduction to LTE (20)

Introduction to LTE
Introduction to LTEIntroduction to LTE
Introduction to LTE
 
Introduction to LTE
Introduction to LTEIntroduction to LTE
Introduction to LTE
 
Some questions and answers on lte radio interface
Some questions and answers on lte radio interfaceSome questions and answers on lte radio interface
Some questions and answers on lte radio interface
 
OFDM Final
OFDM FinalOFDM Final
OFDM Final
 
LTE introduction part1
LTE introduction part1LTE introduction part1
LTE introduction part1
 
Concepts of 3GPP LTE.ppt
Concepts of 3GPP LTE.pptConcepts of 3GPP LTE.ppt
Concepts of 3GPP LTE.ppt
 
Coding
CodingCoding
Coding
 
Performance Improvement of IEEE 802.22 WRAN Physical Layer
Performance Improvement of IEEE 802.22 WRAN Physical LayerPerformance Improvement of IEEE 802.22 WRAN Physical Layer
Performance Improvement of IEEE 802.22 WRAN Physical Layer
 
Performance Improvement of IEEE 802.22 WRAN Physical Layer
Performance Improvement of IEEE 802.22 WRAN Physical LayerPerformance Improvement of IEEE 802.22 WRAN Physical Layer
Performance Improvement of IEEE 802.22 WRAN Physical Layer
 
Performance Improvement of IEEE 802.22 WRAN Physical Layer
Performance Improvement of IEEE 802.22 WRAN Physical LayerPerformance Improvement of IEEE 802.22 WRAN Physical Layer
Performance Improvement of IEEE 802.22 WRAN Physical Layer
 
5 g ran_jnn_atal_fdp
5 g ran_jnn_atal_fdp5 g ran_jnn_atal_fdp
5 g ran_jnn_atal_fdp
 
Performance Analysis of Post Compensated Long Haul High Speed Coherent Optica...
Performance Analysis of Post Compensated Long Haul High Speed Coherent Optica...Performance Analysis of Post Compensated Long Haul High Speed Coherent Optica...
Performance Analysis of Post Compensated Long Haul High Speed Coherent Optica...
 
Performance Analysis of Post Compensated Long Haul High Speed Coherent Optica...
Performance Analysis of Post Compensated Long Haul High Speed Coherent Optica...Performance Analysis of Post Compensated Long Haul High Speed Coherent Optica...
Performance Analysis of Post Compensated Long Haul High Speed Coherent Optica...
 
Mobile Broadband
Mobile BroadbandMobile Broadband
Mobile Broadband
 
Digital network lecturer7
Digital network  lecturer7Digital network  lecturer7
Digital network lecturer7
 
LTE-Advanced Physical Layer
LTE-Advanced Physical LayerLTE-Advanced Physical Layer
LTE-Advanced Physical Layer
 
F01 beam forming_srs
F01 beam forming_srsF01 beam forming_srs
F01 beam forming_srs
 
Samsung_EnodeLSMR__Integration_Module__V1.pdf (1).pdf
Samsung_EnodeLSMR__Integration_Module__V1.pdf (1).pdfSamsung_EnodeLSMR__Integration_Module__V1.pdf (1).pdf
Samsung_EnodeLSMR__Integration_Module__V1.pdf (1).pdf
 
Physical layer aspects (Matthew Baker: RAN WG1 Chair, Alcatel-Lucent)
Physical layer aspects (Matthew Baker: RAN WG1 Chair, Alcatel-Lucent) Physical layer aspects (Matthew Baker: RAN WG1 Chair, Alcatel-Lucent)
Physical layer aspects (Matthew Baker: RAN WG1 Chair, Alcatel-Lucent)
 
LTE Physical layer aspects
LTE Physical layer aspectsLTE Physical layer aspects
LTE Physical layer aspects
 

Recently uploaded

microwave assisted reaction. General introduction
microwave assisted reaction. General introductionmicrowave assisted reaction. General introduction
microwave assisted reaction. General introductionMaksud Ahmed
 
Food safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdfFood safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdfSherif Taha
 
Unit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptxUnit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptxVishalSingh1417
 
Spellings Wk 3 English CAPS CARES Please Practise
Spellings Wk 3 English CAPS CARES Please PractiseSpellings Wk 3 English CAPS CARES Please Practise
Spellings Wk 3 English CAPS CARES Please PractiseAnaAcapella
 
Unit-IV; Professional Sales Representative (PSR).pptx
Unit-IV; Professional Sales Representative (PSR).pptxUnit-IV; Professional Sales Representative (PSR).pptx
Unit-IV; Professional Sales Representative (PSR).pptxVishalSingh1417
 
Making communications land - Are they received and understood as intended? we...
Making communications land - Are they received and understood as intended? we...Making communications land - Are they received and understood as intended? we...
Making communications land - Are they received and understood as intended? we...Association for Project Management
 
Application orientated numerical on hev.ppt
Application orientated numerical on hev.pptApplication orientated numerical on hev.ppt
Application orientated numerical on hev.pptRamjanShidvankar
 
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...Nguyen Thanh Tu Collection
 
Third Battle of Panipat detailed notes.pptx
Third Battle of Panipat detailed notes.pptxThird Battle of Panipat detailed notes.pptx
Third Battle of Panipat detailed notes.pptxAmita Gupta
 
1029-Danh muc Sach Giao Khoa khoi 6.pdf
1029-Danh muc Sach Giao Khoa khoi  6.pdf1029-Danh muc Sach Giao Khoa khoi  6.pdf
1029-Danh muc Sach Giao Khoa khoi 6.pdfQucHHunhnh
 
psychiatric nursing HISTORY COLLECTION .docx
psychiatric  nursing HISTORY  COLLECTION  .docxpsychiatric  nursing HISTORY  COLLECTION  .docx
psychiatric nursing HISTORY COLLECTION .docxPoojaSen20
 
Grant Readiness 101 TechSoup and Remy Consulting
Grant Readiness 101 TechSoup and Remy ConsultingGrant Readiness 101 TechSoup and Remy Consulting
Grant Readiness 101 TechSoup and Remy ConsultingTechSoup
 
How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17Celine George
 
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptxMaritesTamaniVerdade
 
Magic bus Group work1and 2 (Team 3).pptx
Magic bus Group work1and 2 (Team 3).pptxMagic bus Group work1and 2 (Team 3).pptx
Magic bus Group work1and 2 (Team 3).pptxdhanalakshmis0310
 
How to Create and Manage Wizard in Odoo 17
How to Create and Manage Wizard in Odoo 17How to Create and Manage Wizard in Odoo 17
How to Create and Manage Wizard in Odoo 17Celine George
 
Dyslexia AI Workshop for Slideshare.pptx
Dyslexia AI Workshop for Slideshare.pptxDyslexia AI Workshop for Slideshare.pptx
Dyslexia AI Workshop for Slideshare.pptxcallscotland1987
 
PROCESS RECORDING FORMAT.docx
PROCESS      RECORDING        FORMAT.docxPROCESS      RECORDING        FORMAT.docx
PROCESS RECORDING FORMAT.docxPoojaSen20
 
How to Manage Global Discount in Odoo 17 POS
How to Manage Global Discount in Odoo 17 POSHow to Manage Global Discount in Odoo 17 POS
How to Manage Global Discount in Odoo 17 POSCeline George
 

Recently uploaded (20)

microwave assisted reaction. General introduction
microwave assisted reaction. General introductionmicrowave assisted reaction. General introduction
microwave assisted reaction. General introduction
 
Food safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdfFood safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdf
 
Unit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptxUnit-IV- Pharma. Marketing Channels.pptx
Unit-IV- Pharma. Marketing Channels.pptx
 
Spellings Wk 3 English CAPS CARES Please Practise
Spellings Wk 3 English CAPS CARES Please PractiseSpellings Wk 3 English CAPS CARES Please Practise
Spellings Wk 3 English CAPS CARES Please Practise
 
Unit-IV; Professional Sales Representative (PSR).pptx
Unit-IV; Professional Sales Representative (PSR).pptxUnit-IV; Professional Sales Representative (PSR).pptx
Unit-IV; Professional Sales Representative (PSR).pptx
 
Making communications land - Are they received and understood as intended? we...
Making communications land - Are they received and understood as intended? we...Making communications land - Are they received and understood as intended? we...
Making communications land - Are they received and understood as intended? we...
 
Application orientated numerical on hev.ppt
Application orientated numerical on hev.pptApplication orientated numerical on hev.ppt
Application orientated numerical on hev.ppt
 
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
TỔNG ÔN TẬP THI VÀO LỚP 10 MÔN TIẾNG ANH NĂM HỌC 2023 - 2024 CÓ ĐÁP ÁN (NGỮ Â...
 
Third Battle of Panipat detailed notes.pptx
Third Battle of Panipat detailed notes.pptxThird Battle of Panipat detailed notes.pptx
Third Battle of Panipat detailed notes.pptx
 
1029-Danh muc Sach Giao Khoa khoi 6.pdf
1029-Danh muc Sach Giao Khoa khoi  6.pdf1029-Danh muc Sach Giao Khoa khoi  6.pdf
1029-Danh muc Sach Giao Khoa khoi 6.pdf
 
psychiatric nursing HISTORY COLLECTION .docx
psychiatric  nursing HISTORY  COLLECTION  .docxpsychiatric  nursing HISTORY  COLLECTION  .docx
psychiatric nursing HISTORY COLLECTION .docx
 
Grant Readiness 101 TechSoup and Remy Consulting
Grant Readiness 101 TechSoup and Remy ConsultingGrant Readiness 101 TechSoup and Remy Consulting
Grant Readiness 101 TechSoup and Remy Consulting
 
How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17
 
Asian American Pacific Islander Month DDSD 2024.pptx
Asian American Pacific Islander Month DDSD 2024.pptxAsian American Pacific Islander Month DDSD 2024.pptx
Asian American Pacific Islander Month DDSD 2024.pptx
 
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
 
Magic bus Group work1and 2 (Team 3).pptx
Magic bus Group work1and 2 (Team 3).pptxMagic bus Group work1and 2 (Team 3).pptx
Magic bus Group work1and 2 (Team 3).pptx
 
How to Create and Manage Wizard in Odoo 17
How to Create and Manage Wizard in Odoo 17How to Create and Manage Wizard in Odoo 17
How to Create and Manage Wizard in Odoo 17
 
Dyslexia AI Workshop for Slideshare.pptx
Dyslexia AI Workshop for Slideshare.pptxDyslexia AI Workshop for Slideshare.pptx
Dyslexia AI Workshop for Slideshare.pptx
 
PROCESS RECORDING FORMAT.docx
PROCESS      RECORDING        FORMAT.docxPROCESS      RECORDING        FORMAT.docx
PROCESS RECORDING FORMAT.docx
 
How to Manage Global Discount in Odoo 17 POS
How to Manage Global Discount in Odoo 17 POSHow to Manage Global Discount in Odoo 17 POS
How to Manage Global Discount in Odoo 17 POS
 

Introduction to LTE

  • 2. No more Codes Key technologies…. For Downlink : OFDM and MIMO For Uplink : SC - FDMA
  • 4. IMT – Advanced Requirements  Support for at least 40 MHz Bandwidth  Peak Spectral Efficiencies :  DL : 15 bits/s/Hz (600 Mbps)  UL : 6.75 bits/s/Hz(270 Mbps)  Control Plane Latency < 100ms  User Plane Latency < 10ms
  • 5. Releases of 3GPP Specifications Rel. 8 LTE EPC/SAE Location Multi- Rel.9 Services MBMS Standard BS Rel.10 LTE - A Carrier Aggregation Relays Enhanced Intra Band Rel.11 Carrier Aggregation Carrier Aggregation
  • 7. From 3G to 4G…  UTRAN in 3G, E-UTRAN in 4G  CN in 3G, EPC in 4G  NodeB in 3G, E-NodeB in 4G  No RNC as in 3G  RNC tasks perform by eNodeB and EPC
  • 8. LTE/SAE Network Internet Architecture P-GW HSS MME S-GW EPC S5 S6a MME/S-GW MME/S-GW S1 S1 S1 S1 X2 E-UTRAN X2 X2 eNodeB eNodeB eNodeB
  • 9. Evolved UTRAN (E-UTRAN)  eNodeB :  Directly connected to the Core via S1 interface  No RNC as in WCDMA  eNodeBs interconnected via X2 interface  Handovers are handled by eNodeBs it self, communicating via X2 interface  This is an intelligent Node Evolved Packet Core (EPC) Supports only packet switched domain only  Mobility Management Entity (MME) :  Control Plane Node of the EPC  handling connection/release of bearers to a terminal  handling of IDLE to ACTIVE Transition  handling of security keys
  • 10.  Serving Gateway(S-GW) :  User plane node which connects EPC to E-UTRAN  Acts as a mobility anchor when Terminals move between eNodeBs  Mobility Anchor for other 3GPP technologies (GSM,HSPA)  Collecting information for charging purposes  Packet Data Network Gateway (P-GW) :  Connects EPC to the Internet  Allocation of the IP address for a specific terminal  QoS handling  Home Subscriber Service (HSS) :  A database containing subscriber information
  • 11. What is Orthogonal Frequency Division Multiplexing (OFDM) ?
  • 13. ISI – Inter Symbol Interference Time domain : Data Rate ISI
  • 14. Time Spreading (Freq. Selective Fading) • When an impulse is transmitted , how does the average power received by Power Delay Profile Mobile vary as a function of time delay ζ ?  Freq. Selective Fading : Ts < ζ0  Non Freq. Selective Fading : Ts > ζ0
  • 15. Power Delay Profile Spaced Freq. Correlation function FT Inside Coherence BW channel passes all freq. components with equal gain and linear phase  Freq. Selective Fading : W > f0  Non Freq. Selective Fading : W < f0
  • 16. • Symbol rate not increased in order to achieve high data rates. • Instead of that Available BW breaks in to many narrower subcarriers and modulate generated symbols to these subcarriers. • These subcarriers then combine linearly and transmit (OFDM symbol). OFDM Modulation OFDM demodulation
  • 17. Single carrier transmission Vs OFDM Transmission : Single Carrier 1 0 1 Transmission 1 : OFDM Transmission 0 1 t
  • 18. Sub carrier Pulse shape and Spectrum Subcarrier BW < Coherance BW
  • 19. Why “Orthogonal” ? Subcarriers “Orthogonal” in the time domain In OFDM, Subcarriers are overlapped in Frequency domain while maintaining orthogonality in time domain
  • 20. Overlapping subcarriers in Freq. domain Overlapping Subcarriers Spectral Efficiency
  • 21. OFDM Symbol • Generated by Multiplexing several overlapping subcarriers and a Cyclic Prefix (CP). CP Modulated Subcarriers • Cyclic Prefix added to the beginning of the OFDM symbol in order to eliminate IBI • At the Receiver CP is removed and only the information bearing part is further processed .
  • 22. OFDM as a Multiple Access Scheme (OFDMA)  OFDMA : In each OFDM symbol interval, Different subsets of the overall set of available subcarriers are used for transmission to different terminals.
  • 23. What is Multiple-Input Multiple- Output (MIMO) ?
  • 24. Main Transmission Techniques Spatial Diversity : Signal copies are transmitted at multiple antennas or received at more than one antenna .  Spatial Multiplexing : Transmit independent and separately encoded data streams over different antennas
  • 25. Why MIMO?  Significant increase in Spectral efficiency and data rates - Spatial Multiplexing  High QoS - Spatial diversity  Wide Coverage - Spatial diversity
  • 26. Received signal y at the receiver when signal x is transmitted,
  • 27. What is Single Carrier FDMA (SC – FDMA)?
  • 28. SC – FDMA (DFTS-OFDM) Why not Multi Carrier OFDM in Uplink ?  One of the main drawbacks in OFDM : Large instantaneous power variations in the Transmitting signal  This leads to High Peak-to-Average-Power Ratio (PAPR) in the Power Amplifier. Power Amplifier Efficiency Power Amplifier Cost Hence Multicarrier OFDM is not a Viable solution for Low power Mobiles
  • 29.  In OFDM, each subcarrier carries information relating to one specific Symbol  In SC-FDMA, each subcarrier contains information of All Transmitted symbols.  Hence no need of transmitting with High Power. Signal energy is distributed among sub carriers.
  • 30. User Multiplexing in SC-FDMA  Localized Transmission :  Distributed Transmission : User 1 User 2 User 3 User 1 User 2 User 3
  • 31. LTE Physical Layer Overall RAN Protocol Architecture
  • 32. LTE Physical Layer Processing
  • 33. Available DL BW and Physical Resource Blocks (PRBs) Bandwidth (MHz) 1.25 2.5 5.0 10.0 15.0 20.0 Subcarrier BW (kHz) 15 PRB BW (kHz) 180 No. of available RBs 6 12 25 50 75 100
  • 34. Generic Frame Structure 1 Frame (10 ms) 1 Slot (0.5 ms) 0 1 2 n 18 19 1 Sub Frame (1 ms) 0 1 2 3 4 5 6 7 OFDM symbols
  • 35. Resource Grid 7 OFDM symbols Time F R E q R E S O U R C R E E S B O L U O R C C K E G R I D Resource Element
  • 36.  Physical Resource Block (PRB) allocation is done by the scheduling function in eNodeB  PRB is the smallest element of resource allocation assigned by the base station scheduler.
  • 37. LTE Radio Access : An Overview
  • 38.  Channel dependent Scheduling and Rate adaptation :  Depending on the channel conditions, time – frequency resources are allocated to users by the scheduler  Scheduling decisions taken once every 1ms with frequency domain granularity of 180 kHz.  Scheduler allocates resources depending on the Channel State Information(CSI) provided by the UE
  • 39.  Inter Cell interference Coordination (ICIC) :  In LTE, Frequency Reuse Factor equals to one (full spectrum availability at each Cell)  This leads to high performance degradation specially the Users in cell edge.  ICIC reduce ICI at cell edge applying certain restrictions on resource assignment. Adaptive Fractional Frequency Reuse Coordination: 3 1 2 Inner Region Outer Region
  • 40.  Multicast / Broadcast Single frequency Network (MBSFN)  As Identical information is transmitted from transmitters (time aligned), UEs in Cell edge can utilize received power of several surrounding cells to detect / decode broadcasted data.
  • 41. Special Features in LTE – A (Rel.10) Carrier Aggregation : Relaying:
  • 42. Extended Multi Antenna Transmission :  DL Spatial Multiplexing has been expanded to support up to 8 transmission Layers. Heterogeneous Deployments : Ex : Pico Cell placed inside a Macro Cell
  • 44. References :  . “4G LTE/LTE-Advanced for Mobile Broadband” by Erik Dhalman, Stefan Parkvall, Johan Skold  “Overview of the 3GPP Long Term Evolution Physical Layer ” by Jim Zyren, Dr.Wes McCoy  “Wireless Communication” by Andrea Goldsmith
  • 45. THANK YOU! Nadisanka Rupasinghe Engineer – Network Optimization

Editor's Notes

  1. Driving force towards LTE
  2. EPC : Evolved Packet CoreSAE : System Architecture Evolution
  3. SAE : System Architecture EvolutionSome of the RNC functions in UMTS have been brought to the eNodeB and some of the functions to the MME.One eNodeB can be connected to multiple MMEs/S-GW for the purpose of load sharingS1 –c: S1 control for MME ; S1- u : S1 user for S-GW
  4. PCRF : Policy and charging rules Function : Responsible for QoS handling and charging
  5. Multipath propagation
  6. When data rate increases ISI also increases.
  7. Multi path intensity profile
  8. -. Cross Correlation of AWGN is an impulse response. What is the meaning of this?-. Spaced freq. Correlation function is generated by cross correlating two carriers which are separated by Delta(f)-. Disadv. Of single carrier transmission??
  9. -. Symbol periods are now longer compared to single carrier. but bits are txd parallel in order to achieve the desired data rate. -. As Ts is high ISI can completely be removed from the system.-. Depending on the channel condition each subcarrier can be modulated using different modulation schemes (QPSK, 16QAM, 64 QAM etc..)
  10. -. Each OFDM symbol is a liner combination of instantaneous signals on each of the subcarriers in the channel.
  11. - Multi carrier systems with non overlapping sub carriers :- Spectrally inefficient
  12. Frequency Selective fading is not an issue for Subcarriers (𝐵𝑊𝑠𝑢𝑏𝑐𝑎𝑟𝑟𝑖𝑒𝑟 &lt; 𝐵𝑊𝐶𝑜h𝑒𝑟𝑒𝑛𝑐𝑒)Frequency Selective fading is not an issue for Subcarriers (〖𝐵𝑊〗_𝑠𝑢𝑏𝑐𝑎𝑟𝑟𝑖𝑒𝑟 &lt; 〖𝐵𝑊〗_𝐶𝑜ℎ𝑒𝑟𝑒𝑛𝑐𝑒)
  13. One Resource Grid per antenna.
  14. QoS : Beam forming
  15. PAR : Peak to Average Power RatioDFTS-OFDM : DFT-Spread-OFDM
  16. Target : Lower PAPR and Use the benefit of OFDM transmission using multiple carriers.
  17. -. 1 resource grid per antenna.