3G Evolution: HSPA and LTE for Mobile Broadband

Dahlman, Erik; Parkvall, Stefan; Skold, Johan; Beming, Per

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Table of contents
  • Cover
  • Copyright Pageiv
  • Contentsv
  • List of Figuresxiii
  • List of Tablesxxiii
  • Prefacexxv
  • Acknowledgementsxxvii
  • List of Acronymsxxix
  • Part I: Introduction1
  • Chapter 1 Background of 3G evolution3
  • 1.1 History and background of 3G3
  • 1.2 Standardization7
  • 1.3 Spectrum for 3G12
  • Chapter 2 The motives behind the 3G evolution17
  • 2.1 Driving forces17
  • 2.2 3G evolution: two Radio Access Network approaches and an evolved core network23
  • Part II: Technologies for 3G Evolution29
  • Chapter 3 High data rates in mobile communication31
  • 3.1 High data rates: fundamental constraints31
  • 3.2 Higher data rates within a limited bandwidth: higher-order modulation36
  • 3.3 Wider bandwidth including multi-carrier transmission39
  • Chapter 4 OFDM transmission45
  • 4.1 Basic principles of OFDM45
  • 4.2 OFDM demodulation48
  • 4.3 OFDM implementation using IFFT/FFT processing48
  • 4.4 Cyclic-prefix insertion51
  • 4.5 Frequency-domain model of OFDM transmission53
  • 4.6 Channel estimation and reference symbols54
  • 4.7 Frequency diversity with OFDM: importance of channel coding55
  • 4.8 Selection of basic OFDM parameters57
  • 4.9 Variations in instantaneous transmission power60
  • 4.10 OFDM as a user-multiplexing and multiple-access scheme61
  • 4.11 Multi-cell broadcast/multicast transmission and OFDM63
  • Chapter 5 Wider-band 'single-carrier' transmission67
  • 5.1 Equalization against radio-channel frequency selectivity67
  • 5.2 Uplink FDMA with flexible bandwidth assignment73
  • 5.3 DFT-spread OFDM75
  • Chapter 6 Multi-antenna techniques83
  • 6.1 Multi-antenna configurations83
  • 6.2 Benefits of multi-antenna techniques84
  • 6.3 Multiple receive antennas85
  • 6.4 Multiple transmit antennas90
  • 6.5 Spatial multiplexing98
  • Chapter 7 Scheduling, link adaptation and hybrid ARQ107
  • 7.1 Link adaptation: Power and rate control108
  • 7.2 Channel-dependent scheduling109
  • 7.3 Advanced retransmission schemes120
  • 7.4 Hybrid ARQ with soft combining121
  • Part III: HSPA127
  • Chapter 8 WCDMA evolution: HSPA and MBMS129
  • 8.1 WCDMA: brief overview131
  • Chapter 9 High-Speed Downlink Packet Access141
  • 9.1 Overview141
  • 9.2 Details of HSDPA146
  • 9.3 Finer details of HSDPA164
  • Chapter 10 Enhanced Uplink185
  • 10.1 Overview185
  • 10.2 Details of Enhanced Uplink190
  • 10.3 Finer details of Enhanced Uplink213
  • Chapter 11 MBMS: multimedia broadcast multicast services239
  • 11.1 Overview242
  • 11.2 Details of MBMS246
  • Chapter 12 HSPA Evolution251
  • 12.1 MIMO251
  • 12.2 Higher-order modulation259
  • 12.3 Continuous packet connectivity259
  • 12.4 Enhanced CELL_FACH operation266
  • 12.5 Layer 2 protocol enhancements268
  • 12.6 Advanced receivers268
  • 12.7 Conclusion273
  • Part IV: LTE and SAE275
  • Chapter 13 LTE and SAE: introduction and design targets277
  • 13.1 LTE design targets278
  • 13.2 SAE design targets285
  • Chapter 14 LTE radio access: an overview289
  • 14.1 Transmission schemes: downlink OFDM and uplink SC-FDMA289
  • 14.2 Channel-dependent scheduling and rate adaptation290
  • 14.3 Hybrid ARQ with soft combining294
  • 14.4 Multiple antenna support294
  • 14.5 Multicast and broadcast support295
  • 14.6 Spectrum flexibility295
  • Chapter 15 LTE radio interface architecture299
  • 15.1 RLC: radio link control301
  • 15.2 MAC: medium access control302
  • 15.3 PHY: physical layer312
  • 15.4 LTE states314
  • 15.5 Data flow315
  • Chapter 16 LTE physical layer317
  • 16.1 Overall time-domain structure317
  • 16.2 Downlink transmission scheme319
  • 16.3 Uplink transmission scheme340
  • Chapter 17 LTE access procedures357
  • 17.1 Cell search357
  • 17.2 Random access361
  • 17.3 Paging369
  • Chapter 18 System Architecture Evolution371
  • 18.1 Functional split between radio access network and core network372
  • 18.2 HSPA/WCDMA and LTE radio access network374
  • 18.3 Core network architecture382
  • Part V: Performance and Concluding Remarks391
  • Chapter 19 Performance of 3G evolution393
  • 19.1 Performance assessment393
  • 19.2 Performance evaluation of 3G evolution396
  • 19.3 Evaluation of LTE in 3GPP402
  • 19.4 Conclusion405
  • Chapter 20 Other wireless communications systems407
  • 20.1 UTRA TDD407
  • 20.2 CDMA2000409
  • 20.3 GSM/EDGE416
  • 20.4 WiMAX (IEEE 802.16)421
  • 20.5 Mobile Broadband Wireless Access (IEEE 802.20)427
  • 20.6 Summary429
  • Chapter 21 Future evolution431
  • 21.1 IMT-Advanced432
  • 21.2 The research community433
  • 21.3 Standardization bodies433
  • 21.4 Concluding remarks433
  • References435
  • Index445
  • A445
  • B445
  • C445
  • D445
  • E445
  • F446
  • G446
  • H446
  • I446
  • L446
  • M446
  • N447
  • O447
  • P447
  • Q447
  • R447
  • S448
  • T448
  • U448
  • W448
  • X448
  • Z448
Book details
  • Vendor Elsevier S & T
  • SKU 9780123725332
  • ISBN-13 9780080549590
  • Author Dahlman, Erik; Parkvall, Stefan; Skold, Johan; Beming, Per
  • Category Technology & Engineering
  • Subject Telecommunications

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This very up-to-date and practical book, written by engineers working closely in 3GPP, gives insight into the newest technologies and standards adopted by 3GPP, with detailed explanations of the specific solutions chosen and their implementation in HSPA and LTE.

The key technologies presented include multi-carrier transmission, advanced single-carrier transmission, advanced receivers, OFDM, MIMO and adaptive antenna solutions, advanced radio resource management and protocols, and different radio network architectures. Their role and use in the context of mobile broadband access in general is explained. Both a high-level overview and more detailed step-by-step explanations of HSPA and LTE implementation are given. An overview of other related systems such as TD SCDMA, CDMA2000, and WIMAX is also provided.

This is a ‘must-have’ resource for engineers and other professionals working with cellular or wireless broadband technologies who need to know how to utilize the new technology to stay ahead of the competition.

The authors of the book all work at Ericsson Research and are deeply involved in 3G development and standardisation since the early days of 3G research. They are leading experts in the field and are today still actively contributing to the standardisation of both HSPA and LTE within 3GPP.

* Gives the first explanation of the radio access technologies and key international standards for moving to the next stage of 3G evolution: fully operational mobile broadband
* Describes the new technologies selected by the 3GPP to realise High Speed Packet Access (HSPA) and Long Term Evolution (LTE) for mobile broadband
* Gives both higher-level overviews and detailed explanations of HSPA and LTE as specified by 3GPP