OFDM and MC-CDMA: A Primer
暫譯: 正交頻分多工與多載波碼分多工:入門指南
Lajos Hanzo, Thomas Keller
- 出版商: IEEE
- 出版日期: 2006-06-30
- 定價: $4,500
- 售價: 9.5 折 $4,275
- 語言: 英文
- 頁數: 430
- 裝訂: Hardcover
- ISBN: 0470030070
- ISBN-13: 9780470030073
-
相關分類:
通訊系統 Communication-systems
立即出貨 (庫存=1)
買這商品的人也買了...
-
$980$960 -
$450$356 -
$890$703 -
$1,102Theory and Applications of OFDM and CDMA: Wideband Wireless Communications
-
$880$695 -
$650$514 -
$999OpenGL Shading Language, 2/e (Paperback)
-
$780$663 -
$390$304 -
$550$435 -
$270$213 -
$750$593 -
$2,390$2,271 -
$500$450 -
$720$569 -
$300$240 -
$880$695 -
$1,560$1,326 -
$290$226 -
$680$537 -
$600$480 -
$399CCNP ISCW Official Exam Certification Guide
-
$1,596OFDM Baseband Receiver Design for Wireless Communications (Hardcover)
-
$400$316 -
$490$417
商品描述
Description
Wireless communications has witnessed a tremendous growth during the past decade and further spectacular enabling technology advances are expected in an effort to render ubiquitous wireless connectivity a reality.Currently, a technical in-depth book on this subject is unavailable, which has a similar detailed exposure of OFDM, MIMO-OFDM and MC-CDMA. A further attraction of the joint treatment of these topics is that it allows the reader to view their design trade-offs in a comparative context.
Divided into three main parts:
Part I provides a detailed exposure of OFDM designed for employment in various applications
Part II is another design alternative applicable in the context of OFDM systems where the channel quality fluctuations observed are averaged out with the aid of frequency-domain spreading codes, which leads to the concept of MC-CDMA
Part III discusses how to employ multiple antennas at the base station for the sake of supporting multiple users in the uplink
By providing an all-encompassing self-contained treatment this volume will appeal to a wide readership, as it is both an easy-reading textbook and a high-level research monograph.
Table of Contents
About the Authors.Other Wiley and IEEE Press Books on Related Topics.
Acknowledgements.
1. Introduction.
1.1 Motivationof theBook.
1.2 Orthogonal Frequency Division Multiplexing History.
1.3 Outline of the Book.
1.4 ChapterSummaryandConclusion.
I OFDM System Design.
2. Introduction to Orthogonal Frequency Division Multiplexing.
2.1 Introduction.
2.2 Principles of QAM-OFDM.
2.3 Modulation by DFT.
2.4 Transmissionvia Bandlimited Channels.
2.5 Basic OFDM Modem Implementations.
2.6 Cyclic OFDM Symbol Extension.
2.7 Decision-Directed Adaptive Channel Equalisation.
2.8 OFDM Bandwidth Efficiency.
2.9 Chapter Summary and Conclusion.
3. OFDM Transmission over Gaussian Channels
3.1 Orthogonal Frequency Division Multiplexing.
3.2 Choice of the OFDM Modulation.
3.3 OFDM System Performance over AWGN Channels.
3.4 Clipping Amplification.
3.5 Analogue-to-Digital Conversion.
3.6 PhaseNoise.
3.7 Chapter Summary and Conclusion.
4. OFDM Transmission over Wideband Channels.
4.1 The Channel Model.
4.2 Effects of Time-Dispersive Channels on OFDM.
4.3 Channel Transfer Function Estimation.
4.4 System Performance.
4.5 Intersubcarrier Interference Cancellation.
4.6 Chapter Summary and Conclusion.
5. OFDM Time and Frequency Domain Synchronisation.
5.1 System Performance with Frequency and Timing Errors.
5.2 Synchronisation Algorithms.
5.3 Comparison of the Frequency Acquisition Algorithms.
5.4 BER Performance with Frequency Synchronisation.
5.5 Chapter Summary and Conclusion.
5.6 Appendix:OFDM Synchronisation Performance.
6. Adaptive Single- and Multi-user OFDM Techniques.
6.1 Introduction.
6.2 Adaptive Modulation for OFDM.
6.3 Adaptive OFDM Speech System.
6.4 Pre-equalisation.
6.5 Comparison of the Adaptive Techniques.
6.6 Near-Optimum Power- and Bit Allocation in OFDM.
6.7 Multi-User AOFDM.
6.8 Chapter Summary and Conclusion.
II. OFDM versus MC-CDMA Systems.
7. OFDM versus MC-CDMA.
7.1 Amalgamating DS-CDMA and OFDM.
7.3 Further Research Topics in MC-CDMA.
7.4 Chapter Summary and Conclusion.
8. Basic Spreading Sequences.
8.1 PN Sequences.
8.2 Orthogonal Codes.
8.3 Chapter Summary and Conclusion.
9. MC-CDMA Performance in Synchronous Environments.
9.1 The Frequency Selective Channel Model.
9.2 The System Model.
9.3 Single User Detection.
9.4 Multi-User Detection.
9.5 Chapter Summary and Conclusion.
III. Advanced Topics: Multi-User OFDM Systems.
10 Maximum-Likelihood Enhanced Sphere Decoding of MIMO-OFDM.
10.1 Classification of SmartAntennas.
10.2 Introduction to Space-Time Processing.
10.3 SDM-OFDM System Model.
10.4 Optimised Hierarchy Reduced Search Algorithm-Aided SDM Detection.
10.5 Chapter Summary and Conclusion.
11. Genetic Algorithm Aided Joint Channel Estimation and MUD for SDMA OFDM.
11.1 Introduction.
11.2 SDMA MIMO Channel Model.
11.3 System Overview.
11.4 GA-Aided Iterative Joint Channel Estimation and Multi-User Detection.
11.5 Simulation Results.
11.6 Chapter Summary and Conclusion.
12. Multi-User OFDM Employing Genetic Algorithm Aided Minimum Bit Error RateMulti-User Detection.
12.1 Introduction.
12.2 SystemModel.
12.3 GeneticAlgorithm.
12.4 SimulationResults.
12.5 ComplexityComparison.
12.6 ChapterSummaryandConclusion.
13. Conclusion and Further Research Problems.
13.1 Summary and Conclusions of Part I.
13.2 Summary and Conclusions of Part II.
13.3 Summary and Conclusions of Part III.
13.4 Closing Remarks.
Glossary.
Bibliography.
Subject Index.
Author Index.
商品描述(中文翻譯)
**描述**
無線通信在過去十年中經歷了巨大的增長,並且預計將有進一步的驚人技術進步,以實現無處不在的無線連接。
目前,關於此主題的技術深入書籍尚未出現,缺乏對正交頻分複用(OFDM)、多輸入多輸出正交頻分複用(MIMO-OFDM)和多載波碼分多址(MC-CDMA)的詳細介紹。這些主題的聯合處理進一步吸引讀者,因為它使讀者能夠在比較的背景下查看其設計權衡。
**分為三個主要部分:**
**第一部分** 提供了針對各種應用的OFDM詳細介紹。
**第二部分** 是另一種設計替代方案,適用於OFDM系統的背景,其中觀察到的通道質量波動通過頻域擴展碼進行平均,這導致了MC-CDMA的概念。
**第三部分** 討論如何在基站使用多個天線,以支持上行鏈路中的多個用戶。
通過提供全面且自成一體的處理,本書將吸引廣泛的讀者群,因為它既是易讀的教科書,也是高水平的研究專著。
**目錄**
**關於作者。**
**其他Wiley和IEEE出版社相關主題的書籍。**
**致謝。**
**1. 引言。**
1.1 本書的動機。
1.2 正交頻分複用的歷史。
1.3 本書大綱。
1.4 章節摘要與結論。
**I OFDM系統設計。**
**2. 正交頻分複用簡介。**
2.1 簡介。
2.2 QAM-OFDM的原理。
2.3 通過DFT進行調變。
2.4 通過帶限通道的傳輸。
2.5 基本OFDM調製解調器實現。
2.6 循環OFDM符號擴展。
2.7 決策導向自適應通道均衡。
2.8 OFDM帶寬效率。
2.9 章節摘要與結論。
**3. 在高斯通道上的OFDM傳輸**
3.1 正交頻分複用。
3.2 OFDM調變的選擇。
3.3 OFDM系統在AWGN通道上的性能。
3.4 剪裁放大。
3.5 模擬到數字轉換。
3.6 相位噪聲。
3.7 章節摘要與結論。
**4. 在寬頻通道上的OFDM傳輸。**
4.1 通道模型。
4.2 時間色散通道對OFDM的影響。
4.3 通道傳遞函數估計。
4.4 系統性能。
4.5 子載波間干擾消除。
4.6 章節摘要與結論。
**5. OFDM時間和頻率域同步。**
5.1 帶有頻率和時間誤差的系統性能。
5.2 同步算法。
5.3 頻率獲取算法的比較。
5.4 頻率同步下的BER性能。
5.5 章節摘要與結論。
5.6 附錄:OFDM同步性能。
**6. 自適應單用戶和多用戶OFDM技術。**
6.1 簡介。
6.2 OFDM的自適應調變。
6.3 自適應OFDM語音系統。
6.4 預均衡。
6.5 自適應技術的比較。
6.6 OFDM中的近最佳功率和比特分配。
6.7 多用戶AOFDM。
6.8 章節摘要與結論。
**II. OFDM與MC-CDMA系統的比較。**
**7. OFDM與MC-CDMA。**
7.1 DS-CDMA與OFDM的融合。
7.3 MC-CDMA中的進一步研究主題。
7.4 章節摘要與結論。
**8. 基本擴展序列。**
8.1 PN序列。
8.2 正交碼。
8.3 章節摘要與結論。
**9. MC-CDMA在同步環境中的性能。**
9.1 頻率選擇性通道模型。
9.2 系統模型。
9.3 單用戶檢測。
9.4 多用戶檢測。
9.5 章節摘要與結論。
**III. 進階主題:多用戶OFDM系統。**
**10. MIMO-OFDM的最大似然增強球解碼。**
10.1 智能天線的分類。
10.2 空間-時間處理簡介。
10.3 SDM-OFDM系統模型。
10.4 優化層次減少搜索算法輔助的SDM檢測。
10.5 章節摘要與結論。
**11. 基因算法輔助的SDMA OFDM聯合通道估計和多用戶檢測。**
11.1 簡介。
11.2 SDMA MIMO通道模型。
11.3 系統概述。
11.4 GA輔助的迭代聯合通道估計和多用戶檢測。
11.5 模擬結果。
11.6 章節摘要與結論。
**12. 使用基因算法輔助的最小比特錯誤率多用戶檢測的多用戶OFDM。**
12.1 簡介。
12.2 系統模型。
12.3 基因算法。
12.4 模擬結果。
12.5 複雜度比較。
12.6 章節摘要與結論。
**13. 結論與進一步研究問題。**
13.1 第一部分的摘要與結論。
13.2 第二部分的摘要與結論。
13.3 第三部分的摘要與結論。
13.4 結語。
**術語表。**
**參考文獻。**
**主題索引。**
**作者索引。**