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书名 数字通信(第5版英文精简版)/国外电子与通信教材系列
分类 科学技术-工业科技-电子通讯
作者 (美)普罗科斯//萨利希
出版社 电子工业出版社
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《数字通信(第五版·英文精简版)》是著者普罗科斯、萨利希多年教学和科研的总结,是一本比较全面、系统、深入论述数字通信理论的经典力作,在学术界有很大的影响,同时也是一本优秀的研究生教材,多年来,国内外许多高等院校普遍采用本书作为信息和通信专业的研究生教材。全书有16章,内容十分丰富,包括:确定与随机信号分析;数字调制方法;AWGN信道的最佳接收机;载波和符号同步;通过带限信道的数字通信;自适应均衡;多信道和多载波系统;数字通信用扩频信号;衰落信道:信道特征与信号传输;多天线系统。

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普罗科斯、萨利希编著的《数字通信(第五版·英文精简版)》是在《数字通信(第五版)》的基础上,根据国内的实际教学情况进行精简和改编的。主要的精简原则为:保留信号传输理论内容,舍去信息传输理论内容,并以传统而经典的数字传输理论为主,无线通信为辅。改编的部分主要是根据国内实际教学的常用习惯来进行的。精简后的内容主要涵盖:确定与随机信号分析;数字调制方法;AWGN信道的最佳接收机;载波和符号同步;通过带限信道的数字通信;自适应均衡;多信道和多载波系统;数字通信用扩频信号;衰落信道:信道特征与信号传输;多天线系统。

《数字通信(第五版·英文精简版)》取材新颖,讨论问题系统全面、逐步深入、概念清晰,理论分析严谨、逻辑性强,习题丰富,适合作为信息和通信专业高年级本科生和研究生的教材,也可作为相关专业的教师和科技工作者的参考书。

目录

Chapter 1 Introduction 1

 1.1 Elements of a Digital Communication System 1

 1.2 Communication Channels and Their Characteristics 3

 1.3 Mathematical Models for Communication Channels 9

 1.4 A Historical Perspective in the Development of

 Digital ommunications 11

Chapter 2 Deterministic and Random Signal Analysis 14

 2.1 Representation of Bandpass Signals and Systems 14

 2.2 Signal Space Representation of Waveforms 23

 2.3 Some Useful Random Variables 33

 2.4 Random Processes 51

 2.5 Series Expansion of Random Processes 56

 2.6 Bandpass Stationary Stochastic Processes 61

 Problems 65

Chapter 3 Digital Modulation Schemes 77

 3.1 Representation of Digitally Modulated Signals 77

 3.2 Memoryless Modulation Methods 79

 3.3 Signaling Schemes with Memory 96

 3.4 Power Spectrum of Digitally Modulated Signals 113

 Problems 130

Chapter 4 Optimum Receivers for AWGN Channels 142

 4.1 Waveform and Vector Channel Models 142

 4.2 Waveform and Vector AWGN Channels 149

 4.3 Optimal Detection and Error Probability for Band-Limited Signaling 170

 4.4 Optimal Detection and Error Probability for Power-Limited Signaling 184

 4.5 Optimal Detection in Presence of Uncertainty: Noncoherent Detection 192

 4.6 A Comparison of Digital Signaling Methods 208

 4.7 Lattices and Constellations Based on Lattices 212

 4.8 Detection of Signaling Schemes with Memory 224

 4.9 Optimum Receiver for CPM Signals 228

 Problems 241

Chapter 5 Carrier and Symbol Synchronization 264

 5.1 Signal Parameter Estimation 264

 5.2 Carrier Phase Estimation 269

 5.3 Symbol Timing Estimation 289

 5.4 Joint Estimation of Carrier Phase and Symbol Timing 295

 5.5 Performance Characteristics of ML Estimators 297

 Problems 300

Chapter 6 Digital Communication Through Band-Limited Channels 303

 6.1 Characterization of Band-Limited Channels 304

 6.2 Signal Design for Band-Limited Channels 308

 6.3 Optimum Receiver for Channels with ISI and AWGN 329

 6.4 Linear Equalization 337

 6.5 Decision-Feedback Equalization 358

 6.6 Reduced Complexity ML Detectors 363

 Problems 365

Chapter 7 Adaptive Equalization 381

 7.1 Adaptive Linear Equalizer 381

 7.2 Adaptive Decision-Feedback Equalizer 397

 7.3 Recursive Least-Squares Algorithms for Adaptive Equalization 398

 Problems 409

Chapter 8 Multichannel and Multicarrier Systems 413

 8.1 Multichannel Digital Communications in AWGN Channels 413

 8.2 Multicarrier Communications 419

 Problems 435

Chapter 9 Spread Spectrum Signals for Digital Communications 438

 9.1 Model of Spread Spectrum Digital Communication System 439

 9.2 Direct Sequence Spread Spectrum Signals 441

 9.3 Frequency-Hopped Spread Spectrum Signals 476

 9.4 Other Types of Spread Spectrum Signals 488

 Problems 489

Chapter 10 Fading Channels : Characterization and Signaling 492

 10.1 Characterization of Fading Multipath Channels 493

 10.2 The Effect of Signal Characteristics on the Choice of a Channel Model 506

 10.3 Frequency-Nonselective, Slowly Fading Channel 508

 10.4 Diversity Techniques for Fading Multipath Channels 512

 10.5 Signaling over a Frequency-Selective, Slowly Fading Channel:The RAKE emodulator 531

 10.6 Multicarrier Modulation (OFDM) 546

 Problems 552

Chapter 11 Multiple-Antenna Systems 560

 11.1 Channel Models for Multiple-Antenna Systems 560

 11.2 Spread Spectrum Signals and Multicode Transmission 575

Problems 584

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