CDMA2000 Evolution: System Concepts and Design Principles
暫譯: CDMA2000 演進:系統概念與設計原則

Kamran Etemad

  • 出版商: Wiley
  • 出版日期: 2004-09-15
  • 售價: $1,188
  • 語言: 英文
  • 頁數: 384
  • 裝訂: Hardcover
  • ISBN: 0471461253
  • ISBN-13: 9780471461258
  • 已絕版

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商品描述

Description:

An insightful guide to CDMA2000® for implementing successful next-generation mobile and wireless networks

CDMA2000® Evolution: System Concepts and Design Principles is the comprehensive resource you need to understand concepts, techniques, and protocols used in the design of a widely deployed family of next-generation mobile wireless standards: the CDMA2000® standard, including the CDMA2000® 1x (IS2000), and the 1xEV-DO (or IS856/HRPD) systems.

All systems are examined in depth, from the physical channelization to coding, spreading, and modulation schemes. The author leads you through:

  • The key enabling 3G technology concepts, such as link adaptation, Hybrid ARQ, adaptive scheduling, and diversity schemes
  • The Release 0/A of the IS2000 system and the key technical enhancements made to recent releases of the standard
  • The IS2000 Releases C and D, including forward and reverse high-speed packet data channel operation
  • 1xEV-DO/IS856, including the new enhancements and features in EV-DO Rev. A
  • MAC/LAC layer protocols and signaling procedures
  • Network architecture, QoS, radio network performance, and dimensioning
  • Comparisons with other 2.5G/3G systems

From simpler legacy systems to the more advanced revisions made to these standards, the emphasis is on conceptual understanding of key techniques and protocols, and their evolution. Carefully balancing theory and practical insights, CDMA2000® Evolution: System Concepts and Design Principles provides engineers, technical managers, and students in telecommunications with a solid foundation of the new concepts, protocols, and methodologies used for the design of next-generation CDMA networks and systems.

 

Table of Contents:

Preface.

Acknowledgments.

Acronyms.

Chapter 1. Introduction to CDMA2000 Standards Evolution.

1.1 Introduction.

1.2 3GPP2 and CDMA2000 Standardization.

1.3 cdmaONE Evolution to cdma2000.

1.4 References.

Chapter 2. CDMA Concepts.

2.1 Introduction.

2.2 Spread Spectrum Concept.

2.3 Spreading Codes.

2.3.1 Walsh Codes.

2.3.2 PN Codes.

2.4 Multi-path Diversity and Rake Receiver.

2.5 Universal Frequency Reuse.

2.6 Soft Hand Off.

2.7 Power Control and Soft Capacity.

2.8 References.

Chapter 3. Overview of IS95A.

3.1 Introduction.

3.2 Radio and Physical Channelization.

3.3 Reverse Link Physical Channels.

3.3.1 Access Channel.

3.3.2 Reverse Traffic Channels.

3.3.3 Reverse Link Physical Layer Processing.

3.4 Forward Link Channels.

3.4.1 Pilot Channel and PN Offsets.

3.4.2 Synch Channel.

3.4.3 Paging Channel.

3.4.4 Forward Traffic Channel.

3.4.5 Forward Physical Channel Processing.

3.5 Random Access Channel Operation.

3.6 Power Control Schemes in IS95A.

3.6.1 Access Power Control.

3.6.2 Open Loop Power Control on the Traffic Channel.

3.6.3 Closed Loop Power Control on Reverse Traffic Channel.

3.6.4 Forward Link Power Control.

3.7 Traffic Channel Hand Off in IS95A.

3.7.1 Soft Hand Off Scenarios.

3.7.2 Soft Hand-off Process and Parameters.

3.8 References.

Chapter 4. New Concepts and Technologies in cdma2000.

4.1 Introduction.

4.2 Link Adaptation.

4.2.1 Adaptive Modulation and Coding.

4.2.2 Variable Channelization Spreading.

4.2.3 Physical Layer Hybrid ARQ and Incremental Redundancy.

4.3 Multiuser Diversity.

4.4 Beam-forming.

4.5 Turbo Codes.

4.6 Transmit Diversity.

4.7 Network Controlled Selectable Mode Vocoder (SMV).

4.8 References.

Chapter 5. CDMA2000 Protocol Layers and ChannElization.

5.1 Introduction.

5.2 Physical Layer.

5.3 Link Layer (Layer 2).

5.3.1 MAC Sublayer.

5.3.2 LAC Sublayer.

5.4 Layer 3 Signaling.

5.5 CDMA2000 Physical Channelization.

5.5.1 Reverse Link Physical Channels.

5.5.2 Forward Link Physical Channels.

5.6 References.

Chapter 6. CDMA2000 Physical Layer Features.

6.1 Introduction.

6.2 Spectrum Support and Radio Configurations.

6.3 Radio Configurations and Traffic Channel Data Rates.

6.4 Data Rates on Reverse Common Physical Channels.

6.5 Data Rates on Forward Common Physical Channels.

6.6 Reverse and Forward Link Channel Coding.

6.7 Reverse Link Spreading and Modulation.

6.7.1 Reverse Link Orthogonal Channelization Spreading.

6.7.2 Reverse Link Quadrature Spreading and Modulation.

6.8 Spreading and Modulation in the Forward Link.

6.8.1 Forward Link Orthogonal Channelization Spreading.

6.8.2 Forward Link Quadrature Spreading and Modulation.

6.9 References.

Chapter 7. IS2000 Call Processing.

7.1 Introduction.

7.2 Mobile Station Initialization State.

7.3 Mobile Stations Idle State.

7.3.1 Monitoring the Forward Common and Broadcast Channels.

7.3.2 Monitoring Broadcast Messages on F-PCH.

7.3.3 Monitoring Broadcast Messages on F-BCCH and F-CCH.

7.3.4 Monitoring Quick Paging Channel.

7.3.5 Response to Overhead Information.

7.3.6 Idle Handoff.

7.4 System Access State.

7.4.1 Enhanced Random and Reservation Access Procedures.

7.4.2 Access State Handoffs.

7.4.3 Registration.

7.5 References.

Chapter 8. Traffic Channel Operation.

8.1 Introduction.

8.2 Traffic Channel Service Configuration and Negotiation.

8.3 Voice and Data Transmission on Traffic Channels.

8.3.1 Forward SCH Assignment.

8.3.2 Reverse SCH Assignment.

8.3.3 Admission Control and Traffic Channel Allocation.

8.4 Traffic Channel Hand Off.

8.4.1 Traffic Channel Soft Hand Off.

8.4.2 Dynamic Thresholds for Soft Handoff.

8.4.3 Soft Hand off for Supplemental Channels.

8.4.4 CDMA-to-CDMA Hard Handoff.

8.5 Traffic Channel Power Control.

8.5.1 Forward Traffic Channel Power Control.

8.5.2 Reverse Traffic Channel Power Control.

8.6 Reference.

Chapter 9. CDMA2000 Network Architecture.

9.1 Introduction.

9.2 Legacy cdmaONE Networks.

9.3 New Network Elements in CDMA2000.

9.4 New Network Element Interfaces in CDMA2000.

9.5 Mobility Management for Packet Data Service.

9.5.1 Inter-PCF and Intra PDSN Handoff.

9.5.2 Inter PDSN Handoff.

9.5.3 Inter-PDSN Fast Hand off.

9.6 3GPP2 CDMA2000 Network Model.

9.7 3GPP2 All IP Network Model.

9.8 End-to-End QoS Network Model.

9.9 Positioning System in cdma2000.

9.10 References.

Chapter 10. 1xEV-DO (HRPD) Air Interface.

10.1 Introduction.

10.2 Air Interface Protocol Layers.

10.3 Physical and Logical Channelization.

10.3.1 Forward Link Channels.

10.3.2 Reverse Link Channels.

10.4 Forward Physical Channel Structure.

10.4.1 Forward Traffic Channel Structure.

10.4.2 Forward MAC Channel Structure.

10.4.3 Quadrature Spreading and Modulation.

10.5 Reverse Physical Channel Structure.

10.5.1 Reverse Traffic Channel Structure.

10.5.2 Reverse Access Channel Structure.

10.5.3 Quadrature Spreading and Modulation.

10.6 Forward Link Data Transmission.

10.6.1 Forward Rate Selection.

10.6.2 Forward Link Packet Scheduling.

10.6.3 Hybrid ARQ and Multi-slot Data Transmission on the Forward Link.

10.7 Data Transmission on the Reverse Link.

10.7.1 Data Rate Selection for Reverse Data Channel.

10.7.2 Power Control on the Reverse Traffic Channel.

10.7.3 Cell/Sector Reselection.

10.8 Enhancement in HRPD/IS856 Release A.

10.8.1 Reverse Link Enhancements.

10.8.2 Forward Link Enhancements.

10.8.3 Improved Handoff and Faster Paging.

10.9 HRPD Network Architecture.

10.10 HRPD-IS2000 Hybrid Networks.

10.11 References.

Chapter 11. CDMA2000 Release D (1xEV-DV).

11.1 Introduction.

11.2 1X-EV DV Protocol Layers.

11.3 New Physical Channels in 1xEV-DV (Rel. C and D).

11.4 Channel Configuration Capabilities for Release D.

11.5 Forward Packet Data Channel Operation.

11.5.1 F-PDCCH Processing.

11.5.2 Hybrid ARQ on F-PDCH.

11.6 Channel Quality Measurement and Cell Switch.

11.7 Reverse Packet Data Channel Operation.

11.8 Physical Layer Structure for the New Channels.

11.8.1 Forward Packet Data Control Channel Structure.

11.8.2 Forward Packet Data Channel Structure.

11.8.3 Reverse Packet Data and Control Channels.

11.9 Other Enhancements in 1xEV-DV.

11.9.1 Broadcast/Multicast Service (BCMCS).

11.9.2 Fast Call Setup.

11.9.3 Other Signaling Enhancements.

11.10 References.

Chapter 12. Radio Performance and Network Planning.

12.1 Introduction.

12.2 cdma2000 Coverage and Link Budget Analysis.

12.2.1 IS2000 Reverse Link Budget Analysis.

12.2.2 IS2000 Forward Link Budget Analysis.

12.3 cdma2000 Voice and Data Capacity Performance.

12.4 1xEV-DO Coverage and Capacity Performance.

12.5 Radio Network Dimensioning and Planning Issues.

12.5.1 Greenfield Deployment.

12.5.2 Migration or Expansion of an Existing Network.

12.6 References.

Chapter 13. Overview of Other IMT2000 Standards.

13.1 Introduction.

13.2 IMT2000-Direct Spread, UMTS-FDD (WCDMA).

13.3 High Speed Downlink Packet Access (HSDPA).

13.4 IMT2000-TDD (TD-CDMA).

13.5 UMTS Network Architecture.

13.6 References.

Index.

商品描述(中文翻譯)

描述:
《CDMA2000® 演進:系統概念與設計原則》是一本深入的指南,幫助您實施成功的下一代行動和無線網路。這本書是您理解設計廣泛部署的下一代行動無線標準(CDMA2000® 標準,包括 CDMA2000® 1x (IS2000) 和 1xEV-DO (或 IS856/HRPD) 系統)所需的全面資源。

所有系統都將深入探討,從物理通道化到編碼、擴頻和調變方案。作者將引導您了解:
- 3G 主要技術概念,如鏈路適應、混合自動重傳請求(Hybrid ARQ)、自適應排程和多樣性方案
- IS2000 系統的 Release 0/A 及最近標準版本的主要技術增強
- IS2000 的 Release C 和 D,包括前向和反向高速封包數據通道操作
- 1xEV-DO/IS856,包括 EV-DO Rev. A 中的新增強和功能
- MAC/LAC 層協議和信號程序
- 網路架構、服務品質(QoS)、無線網路性能和維度設計
- 與其他 2.5G/3G 系統的比較

從較簡單的舊系統到這些標準的更高級修訂,重點在於對關鍵技術和協議的概念理解及其演變。《CDMA2000® 演進:系統概念與設計原則》在理論與實務見解之間取得良好平衡,為電信工程師、技術經理和學生提供了設計下一代 CDMA 網路和系統所需的新概念、協議和方法論的堅實基礎。

目錄:
前言
致謝
縮寫
第一章 CDMA2000 標準演進介紹
1.1 介紹
1.2 3GPP2 和 CDMA2000 標準化
1.3 cdmaONE 演進至 cdma2000
1.4 參考文獻
第二章 CDMA 概念
2.1 介紹
2.2 擴頻概念
2.3 擴頻碼
2.3.1 Walsh 碼
2.3.2 PN 碼
2.4 多路徑多樣性和 Rake 接收器
2.5 通用頻率重用
2.6 軟切換
2.7 功率控制和軟容量
2.8 參考文獻
第三章 IS95A 概述
3.1 介紹
3.2 無線和物理通道化
3.3 反向鏈路物理通道
3.3.1 存取通道
3.3.2 反向流量通道
3.3.3 反向鏈路物理層處理
3.4 前向鏈路通道
3.4.1 導航通道和 PN 偏移
3.4.2 同步通道
3.4.3 尋呼通道
3.4.4 前向流量通道
3.4.5 前向物理通道處理
3.5 隨機存取通道操作
3.6 IS95A 中的功率控制方案
3.6.1 存取功率控制
3.6.2 流量通道的開環功率控制
3.6.3 反向流量通道的閉環功率控制
3.6.4 前向鏈路功率控制
3.7 IS95A 中的流量通道切換
3.7.1 軟切換場景
3.7.2 軟切換過程和參數
3.8 參考文獻
第四章 cdma2000 中的新概念和技術
4.1 介紹
4.2 鏈路適應
4.2.1 自適應調變和編碼
4.2.2 可變通道化擴頻
4.2.3 物理層混合 ARQ 和增量冗餘
4.3 多用戶多樣性
4.4 波束成形
4.5 渦輪碼
4.6 發射多樣性
4.7 網路控制的可選模式語音編碼器(SMV)
4.8 參考文獻
第五章 CDMA2000 協議層和通道化
5.1 介紹
5.2 物理層
5.3 鏈路層(第 2 層)
5.3.1 MAC 子層
5.3.2 LAC 子層
5.4 第 3 層信號
5.5 CDMA2000 物理通道化
5.5.1 反向鏈路物理通道
5.5.2 前向鏈路物理通道
5.6 參考文獻
第六章 CDMA2000 物理層特性
6.1 介紹
6.2 頻譜支持和無線配置
6.3 無線配置和流量通道數據速率
6.4 反向公共物理通道的數據速率
6.5 前向公共物理通道的數據速率
6.6 反向和前向鏈路通道編碼
6.7 反向鏈路擴頻和調變
6.7.1 反向鏈路正交通道化擴頻
6.7.2 反向鏈路正交擴頻和調變
6.8 前向鏈路的擴頻和調變
6.8.1 前向鏈路正交通道化擴頻
6.8.2 前向鏈路正交擴頻和調變
6.9 參考文獻
第七章 IS2000 呼叫處理
7.1 介紹
7.2 行動台初始化狀態
7.3 行動台閒置狀態
7.3.1 監控前向公共和廣播通道
7.3.2 監控 F-PCH 上的廣播消息
7.3.3 監控 F-BCCH 和 F-CCH 上的廣播消息
7.3.4 監控快速尋呼通道
7.3.5 對上行信息的回應
7.3.6 閒置切換
7.4 系統存取狀態
7.4.1 增強的隨機和保留存取程序
7.4.2 存取狀態切換
7.4.3 註冊
7.5 參考文獻
第八章 流量通道操作
8.1 介紹
8.2 流量通道服務配置和協商
8.3 流量通道上的語音和數據傳輸
8.3.1 前向 SCH 分配
8.3.2 反向 SCH 分配
8.3.3 接納控制和流量通道分配
8.4 流量通道切換
8.4.1 流量通道軟切換
8.4.2 軟切換的動態閾值
8.4.3 補充通道的軟切換
8.4.4 CDMA 到 CDMA 的硬切換
8.5 流量通道功率控制
8.5.1 前向流量通道功率控制
8.5.2 反向流量通道功率控制
8.6 參考文獻
第九章 CDMA2000 網路架構
9.1 介紹
9.2 舊版 cdmaONE 網路
9.3 CDMA2000 中的新網路元素
9.4 CDMA2000 中的新網路元素介面
9.5 對封包數據服務的移動性管理
9.5.1 Inter-PCF 和 Intra PDSN 切換
9.5.2 Inter PDSN 切換
9.5.3 Inter-PDSN 快速切換
9.6 3GPP2 CDMA2000 網路模型
9.7 3GPP2 全 IP 網路模型
9.8 端到端 QoS 網路模型
9.9 cdma2000 中的定位系統
9.10 參考文獻