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醉染图书4G LTE-Advanced Pro和通向5G之路9787564171773
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Preface
Acknowledgments
Abbreviations and Acronyms
CHAPTER 1Introduction
1.1 IG and 2G——Voice-Centric Technologies
1.2 3G and 4G——Mobile Broadband
1.3 5G——Beyond Mobile Broadband——Networked Society
1.4 Outline
CHAPTER 2 Spectrum Regulation and Standardization From 3G to 5G
2.1 Overview of Standardization and Regulation
2.2 ITU-R Activities From 3G to 5G
2.2.1 The Role of ITU-R
2.2.2 IMT-2000 and IMT-Advanced
2.. IMT-2020
. Spectrum for Mobile Systems
..1 Spectrum Defined for IMT Systems by the ITU-R
..2 Frequency Bands for LTE
.. New Frequency Bands
2.4 Spectrum for 5G
2.4.1 New Frequency Bands to be Studied by WRC
2.4.2 RF Exposure Above 6 GHz
2.5 3GPP Standardization
2.5.1 The 3GPP Process
2.5.2 Specifying 5G in 3GPP
CHAPTER 3 LTE Radio Access: An Overview
3.1 LTE Basic Technologies
3.1.1 Transmission Scheme
3.1.2 Channel-Dependent Scheng and Rate Adaptation
3.1.3 Inter-Cell Interference Coordination
3.1.4 Multi-Antenna Transmission
3.1.5 Spectrum Flelity
3.1.6 Multicast and Broadcast Support
3.1.7 Positioning
3.2 LTE Evolution
3.3 Spectrum Flelity
3.3.1 Carrier Aggregation
3.3.2 License-Assisted Access
3.4 Multi-Antenna Enhancements
3.4.1 Extended Multi-Antenna Transmission
3.4.2 Multi-Point Coordination and Transmission
3.4.3 Enhanced Control-Channel Structure
3.5 Densification, Small Cells, and Heterogeneous Deployments
3.5.1 Relaying
3.5.2 Heterogeneous Deployments
3.5.3 Small-Cell On-Off
3.5.4 Dual Connectivity
3.5.5 Dynamic TDD
3.5.6 WLAN Interworking
3.6 Device Enhancements
3.7 New Scenarios
3.7.1 Device-to-Device Communication
3.7.2 Machine-Type Communication
3.8 Device Capabilities
CHAPTER 4 Raflio-lnterface Architecture
4.1 Overall System Architecture
4.1.1 Core Network
4.1.2 Radio-Access Network
4.2 Radio Protocol Architecture
4.2.1 Packet-Data Convergence Protocol
4.2.2 Radio-Link Control
4.. Medium-Access Control
4.2.4 Physical Layer
4.3 Control-Plane Protocols
4.3.1 State Machine
CHAPTER 5 Physical Transmission Resources
5.1 Overall Time-Frequency Structure
5.2 Normal Subframes and MBSFN Subframes
5.3 Antenna Ports
5.3.1 si-co-Located Antenna Ports
5.4 Duplex Schemes
5.4.1 Frequency-Division Duplex
5.4.2 Time-Division Duplex
5.4.3 LTE and TD-SCDMA Coexistence
5.4.4 License-Assisted Access
5.5 Carrier Aggregation
5.6 Frequency-Domain Location of LTE Carriers
CHAPTER 6 Downlink Physical-Layer Processing
CHAPTER 7 Uplink Physical-Layer Processing
CHAPTER 8 Retransmission Protocols
CHAPTER 9 Scheng and Rate Adaptation
CHAPTER 10 Channel-State Information and Full-Dimension MIMO
CHAPTER 11 Access Procedures
CHAPTER 12 Carrier Aggregation
CHAPTER 13 Multi-Point Coordination and Transmission
CHAPTER 14 Heterogeneous Deployments
CHAPTER 15 Small-Cell Enhancements and Dynamic TDD
CHAPTER 16 Dual Connectivity
CHAPTER 17 Unlicensed Spectrum and License-Assisted Access
CHAPTER 18 Relaying
CHAPTER 19 Multimedia BroadcasVMulticast Services
CHAPTER 20 LTE for Massive MTC Applications
CHAPTER 21 Device-to-Device Connectivity
CHAPTER 22 Spectrum and RF Characteristics
CHAPTER 5G Wireless Access
CHAPTER 24 New 5G Radio-Access Technology
CHAPTER 25 Concluding Remarks
References
Index
埃里克·达尔曼,供职于爱立信研究中心,并深度参与了3G与4G的发展与标准化工作。他是相关领域的专家,如今仍在3GPP里为4G和5G的标准化工作积极贡献力量。
斯蒂芬·帕克威尔,供职于爱立信研究中心,并深度参与了3G与4G的发展与标准化工作。他是相关领域的专家,如今仍在3GPP里为4G和5G的标准化工作积极贡献力量。
约翰·斯科德,供职于爱立信研究中心,并深度参与了3G与4G的发展与标准化工作。他是相关领域的专家,如今仍在3GPP里为4G和5G的标准化工作积极贡献力量。
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