書????名 | 無線通信基礎(chǔ)(英文版) | 作????者 | [美]David Tse、Pramod Viswanath |
---|---|---|---|
出版社 | 人民郵電出版社 | 出版時(shí)間 | 2010年11月 |
頁????數(shù) | 564 頁 | 定????價(jià) | 79 元 |
開????本 | 16 開 | 裝????幀 | 平裝 |
ISBN | 9787115200709 |
Contents
1 Introduction 1
1.1 Book objective 1
1.2 Wireless systems 2
1.3 Book outline 5
2 The wireless channel 10
2.1 Physical modeling for wireless channels 10
2.1.1 Free space, fixed transmit and receive antennas 12
2.1.2 Free space, moving antenna 13
2.1.3 Reflecting wall, fixed antenna 14
2.1.4 Reflecting wall, moving antenna 16
2.1.5 Reflection from a ground plane 17
2.1.6 Power decay with distance and shadowing 18
2.1.7 Moving antenna, multiple reflectors 19
2.2 Input/output model of the wireless channel 20
2.2.1 The wireless channel as a linear time-varying system 20
2.2.2 Baseband equivalent model 22
2.2.3 A discrete-time baseband model 25
Discussion 2.1 Degrees of freedom 28
2.2.4 Additive white noise 29
2.3 Time and frequency coherence 30
2.3.1 Doppler spread and coherence time 30
2.3.2 Delay spread and coherence bandwidth 31
2.4 Statistical channel models 34
2.4.1 Modeling philosophy 34
2.4.2 Rayleigh and Rician fading 36
2.4.3 Tap gain auto-correlation function 37
Example 2.1 Clarke’s model 38
Chapter 2 The main plot 40
2.5 Bibliographical notes 42
2.6 Exercises 42
3 Point-to-point communication: detection, diversity, and channel ncertainty 49
3.1 Detection in a Rayleigh fading channel 50
3.1.1 Non-coherent detection 50
3.1.2 Coherent detection 52
3.1.3 From BPSK to QPSK: exploiting the degrees of freedom 56
3.1.4 Diversity 59
3.2 Time diversity 60
3.2.1 Repetition coding 60
3.2.2 Beyond repetition coding 64
Summary 3.1 Time diversity code design criterion 68
Example 3.1 Time diversity in GSM 69
3.3 Antenna diversity 71
3.3.1 Receive diversity 71
3.3.2 Transmit diversity: space-time codes 73
3.3.3 MIMO: a 2×2 example 77
Summary 3.2 2×2 MIMO schemes 82
3.4 Frequency diversity 83
3.4.1 Basic concept 83
3.4.2 Single-carrier with ISI equalization 84
3.4.3 Direct-sequence spread-spectrum 91
3.4.4 Orthogonal frequency division multiplexing 95
Summary 3.3 Communication over frequency-selective channels 101
3.5 Impact of channel uncertainty 102
3.5.1 Non-coherent detection for DS spread-spectrum 103
3.5.2 Channel estimation 105
3.5.3 Other diversity scenarios 107
Chapter 3 The main plot 109
3.6 Bibliographical notes 110
4 Cellular systems: multiple access and interference management 120
4.1 Introduction 120
4.2 Narrowband cellular systems 123
4.2.1 Narrowband allocations: GSM system 124
4.2.2 Impact on network and system design 126
4.2.3 Impact on frequency reuse 127
Summary 4.1 Narrowband systems 128
4.3 Wideband systems: CDMA 128
4.3.1 CDMA uplink 131
4.3.2 CDMA downlink 145
4.3.3 System issues 147
Summary 4.2 CDMA 147
4.4 Wideband systems: OFDM 148
4.4.1 Allocation design principles 148
4.4.2 Hopping pattern 150
4.4.3 Signal characteristics and receiver design 152
4.4.4 Sectorization 153
Example 4.1 Flash-OFDM 153
Chapter 4 The main plot 154
4.5 Bibliographical notes 155
4.6 Exercises 155
5 Capacity of wireless channels 166
5.1 AWGN channel capacity 167
5.1.1 Repetition coding 167
5.1.2 Packing spheres 168
Discussion 5.1 Capacity-achieving AWGN channel codes 170
Summary 5.1 Reliable rate of communication and capacity 171
5.2 Resources of the AWGN channel 172
5.2.1 Continuous-time AWGN channel 172
5.2.2 Power and bandwidth 173
Example 5.2 Bandwidth reuse in cellular systems 175
5.3 Linear time-invariant Gaussian channels 179
5.3.1 Single input multiple output (SIMO) channel 179
5.3.2 Multiple input single output (MISO) channel 179
5.3.3 Frequency-selective channel 181
5.4 Capacity of fading channels 186
5.4.1 Slow fading channel 187
5.4.2 Receive diversity 189
5.4.3 Transmit diversity 191
Summary 5.2 Transmit and receive diversity 195
5.4.4 Time and frequency diversity 195
Summary 5.3 Outage for parallel channels 199
5.4.5 Fast fading channel 199
5.4.6 Transmitter side information 203
Example 5.3 Rate adaptation in IS-856 209
5.4.7 Frequency-selective fading channels 213
5.4.8 Summary: a shift in point of view 213
Chapter 5 The main plot 214
5.5 Bibliographical notes 217
5.6 Exercises 217
6 Multiuser capacity and opportunistic communication 228
6.1 Uplink AWGN channel 229
6.1.1 Capacity via successive interference cancellation 229
6.1.2 Comparison with conventional CDMA 232
6.1.3 Comparison with orthogonal multiple access 232
6.1.4 General K -user uplink capacity 234
6.2 Downlink AWGN channel 235
6.2.1 Symmetric case: two capacity-achieving schemes 236
6.2.2 General case: superposition coding achieves capacity 238
Summary 6.1 Uplink and downlink AWGN capacity 240
Discussion 6.1 SIC: implementation issues 241
6.3 Uplink fading channel 243
6.3.1 Slow fading channel 243
6.3.2 Fast fading channel 245
6.3.3 Full channel side information 247
Summary 6.2 Uplink fading channel 250
6.4 Downlink fading channel 250
6.4.1 Channel side information at receiver only 250
6.4.2 Full channel side information 251
6.5 Frequency-selective fading channels 252
6.6 Multiuser diversity 253
6.6.1 Multiuser diversity gain 253
6.6.2 Multiuser versus classical diversity 256
6.7 Multiuser diversity: system aspects 256
6.7.1 Fair scheduling and multiuser diversity 258
6.7.2 Channel prediction and feedback 262
6.7.3 Opportunistic beamforming using dumb antennas 263
6.7.4 Multiuser diversity in multicell systems 270
6.7.5 A system view 272
Chapter 6 The main plot 275
6.8 Bibliographical notes 277
6.9 Exercises 278
7 MIMO I: spatial multiplexing and channel modeling 290
7.1 Multiplexing capability of deterministic MIMO channels 291
7.1.1 Capacity via singular value decomposition 291
7.1.2 Rank and condition number 294
7.2 Physical modeling of MIMO channels 295
7.2.1 Line-of-sight SIMO channel 296
7.2.2 Line-of-sight MISO channel 298
7.2.3 Antenna arrays with only a line-of-sight path 299
7.2.4 Geographically separated antennas 300
7.2.5 Line-of-sight plus one reflected path 306
Summary 7.1 Multiplexing capability of MIMO channels 309
7.3 Modeling of MIMO fading channels 309
7.3.1 Basic approach 309
7.3.2 MIMO multipath channel 311
7.3.3 Angular domain representation of signals 311
7.3.4 Angular domain representation of MIMO channels 315
7.3.5 Statistical modeling in the angular domain 317
7.3.6 Degrees of freedom and diversity 318
Example 7.1 Degrees of freedom in clustered response models 319
7.3.7 Dependency on antenna spacing 323
7.3.8 I.i.d.Rayleigh fading model 327
Chapter 7 The main plot 328
7.4 Bibliographical notes 329
7.5 Exercises 330
8 MIMO II: capacity and multiplexing architectures 332
8.1 The V-BLAST architecture 333
8.2 Fast fading MIMO channel 335
8.2.1 Capacity with CSI at receiver 336
8.2.2 Performance gains 338
8.2.3 Full CSI 346
Summary 8.1 Performance gains in a MIMO channel 348
8.3 Receiver architectures 348
8.3.1 Linear decorrelator 349
8.3.2 Successive cancellation 355
8.3.3 Linear MMSE receiver 356
8.3.4 Information theoretic optimality 362
Discussion 8.1 Connections with CDMA multiuser detection and ISI equalization 364
8.4 Slow fading MIMO channel 366
8.5 D-BLAST: an outage-optimal architecture 368
8.5.1 Suboptimality of V-BLAST 368
8.5.2 Coding across transmit antennas: D-BLAST 371
8.5.3 Discussion 372
Chapter 8 The main plot 373
8.6 Bibliographical notes 374
8.7 Exercises 374
9 MIMO III: diversity–multiplexing tradeoff and universal space-time codes 383
9.1 Diversity–multiplexing tradeoff 384
9.1.1 Formulation 384
9.1.2 Scalar Rayleigh channel 386
9.1.3 Parallel Rayleigh channel 390
9.1.4 MISO Rayleigh channel 391
9.1.5 2×2 MIMO Rayleigh channel 392
9.1.6 nt×nr MIMO i.i.d.Rayleigh channel 395
9.2 Universal code design for optimal diversity-multiplexing tradeoff 398
9.2.1 QAM is approximately universal for scalar channels 398
Summary 9.1 Approximate universality 400
9.2.2 Universal code design for parallel channels 400
Summary 9.2 Universal codes for the parallel channel 406
9.2.3 Universal code design for MISO channels 407
Summary 9.3 Universal codes for the MISO channel 410
9.2.4 Universal code design for MIMO channels 411
Discussion 9.1 Universal codes in the downlink 415
Chapter 9 The main plot 415
9.3 Bibliographical notes 416
9.4 Exercises 417
10 MIMO IV: multiuser communication 425
10.1 Uplink with multiple receive antennas 426
10.1.1 Space-division multiple access 426
10.1.2 SDMA capacity region 428
10.1.3 System implications 431
Summary 10.1 SDMA and orthogonal multiple access 432
10.1.4 Slow fading 433
10.1.5 Fast fading 436
10.1.6 Multiuser diversity revisited 439
Summary 10.2 Opportunistic communication and multiple receive antennas 442
10.2 MIMO uplink 442
10.2.1 SDMA with multiple transmit antennas 442
10.2.2 System implications 444
10.2.3 Fast fading 446
10.3 Downlink with multiple transmit antennas 448
10.3.1 Degrees of freedom in the downlink 448
10.3.2 Uplink–downlink duality and transmit beamforming 449
10.3.3 Precoding for interference known at transmitter 454
10.3.4 Precoding for the downlink 465
10.3.5 Fast fading 468
10.4 MIMO downlink 471
10.5 Multiple antennas in cellular networks: a system view 473
Summary 10.3 System implications of multiple antennas on multiple access 473
10.5.1 Inter-cell interference management 474
10.5.2 Uplink with multiple receive antennas 476
10.5.3 MIMO uplink 478
10.5.4 Downlink with multiple receive antennas 479
10.5.5 Downlink with multiple transmit antennas 479
Example 10.1 SDMA in ArrayComm systems 479
Chapter 10 The main plot 481
10.6 Bibliographical notes 482
10.7 Exercises 483
Appendix A Detection and estimation in additive Gaussian noise 496
Appendix B Information theory from first principles 516
References 546
Index 554
本書介紹無線通信的基本原理,著重強(qiáng)調(diào)概念及其在系統(tǒng)中的實(shí)現(xiàn)之間的相互影響,涉及的主要問題有MIMO通信、空時(shí)編碼、機(jī)會通信、OFDM和CDMA等,這些概念均利用無線系統(tǒng)的大量實(shí)例予以說明。書中還配有大量的習(xí)題和圖表,可以幫助讀者進(jìn)一步理解材料內(nèi)容。
本書適合作為通信工程和電子信息類相關(guān)專業(yè)高年級本科生和研究生的教材,也可供工程技術(shù)人員參考。
我有一個(gè)絕對適合你的資料,已經(jīng)發(fā)到你的郵箱了。你看一下,這個(gè)是我自己寫的。有看不明白的地方就直接找我
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英文版還是很長的,你可以慢慢學(xué)習(xí),不要考慮一蹴而就。 Jingle?bells,?jingle?bells, jingle?all?the?way! O?what?fun?it?is?to?ride ...
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大?。?span id="esuu2ss" class="single-tag-height">2.3MB
頁數(shù): 16頁
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一、天線的基本知識 天線的作用與地位 無線電發(fā)射機(jī)輸出的射頻信號功率,通過饋線(電纜)輸送到天線,由天線以電磁波形式輻射出 去。電磁波到達(dá)接收地點(diǎn)后,由天線接下來(僅僅接收很小很小一部分功率),并通過饋線送到無線電接 收機(jī)??梢?,天線是發(fā)射和接收電磁波的一個(gè)重要的無線電設(shè)備,沒有天線也就沒有無線電通信。 天線品種繁多,以供不同頻率、不同用途、不同場合、不同要求等不同情況下使用。 對于眾多品種的天線,進(jìn)行適當(dāng)?shù)姆诸愂潜匾模?* 按用途分類 : 可分為通信天線、電視天線、雷達(dá)天線等; * 按工作頻段分類 : 可分為短波天線、超短波天線、微波天線等; * 按方向性分類 : 可分為全向天線、定向天線等; * 按外形分類 : 可分為線狀天線、面狀天線等 . 電磁波的輻射 導(dǎo)線上有交變電流流動時(shí),就可以發(fā)生電磁波的輻射,輻射的能力與導(dǎo)線的長度和形狀有關(guān)。如 圖 1.1 a 所示,若兩導(dǎo)線的距離很
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外貿(mào)合同 Contract( sales confirmation) 合同編號(Contract No.): _______________ 簽訂日期(Date) :___________(dá) 簽訂地點(diǎn)(Signed at) :________(dá)___ 買方:__________________________ The Buyer:________________________ 地址:__________________________ Address: _________________________ 電話(Tel):___________傳真(Fax):__________ 電子郵箱(E-mail):______________________ 賣方:________________
作者: (美)David Tse
David Tse博士是無線通信領(lǐng)域新一代權(quán)威,現(xiàn)任加州大學(xué)伯克利分校電氣工程與計(jì)算機(jī)科學(xué)系教授,畢業(yè)于麻省理工學(xué)院。..
無線通信基礎(chǔ)
無線通信基礎(chǔ)(英文影印版)
作者: (美)Pramod Viswanath
ramod Viswanath博士現(xiàn)任伊利諾伊大學(xué)厄巴納一尚佩恩分校電氣與計(jì)算機(jī)工程系副教授,畢業(yè)子加州大學(xué)伯克利分校。..
無線通信基礎(chǔ)
無線通信基礎(chǔ)(英文影印版)
為便于閱讀,《無線通信基礎(chǔ)及應(yīng)用》在編寫中力求深入淺出、理論聯(lián)系實(shí)際。并力求充分反映無線通信技術(shù)的新進(jìn)展。書中列舉了一些例題,在每章后面都附有習(xí)題?!稛o線通信基礎(chǔ)及應(yīng)用》可作為高等學(xué)校無線電技術(shù)、通信與電子系統(tǒng)等專業(yè)高年級本科生的教材,也可作為通信工程技術(shù)人員和科研人員繼續(xù)學(xué)習(xí)的參考用書。
《無線通信基礎(chǔ)及應(yīng)用》配有電子教案,需要者可登錄出版社網(wǎng)站,免費(fèi)下載。
第1章 緒論
1.1 無線通信系統(tǒng)的構(gòu)成
1.2 無線通信系統(tǒng)的主要規(guī)格指標(biāo)
1.3 無線通信技術(shù)的發(fā)展
1.4 無線通信的發(fā)展趨勢
1.5 現(xiàn)代無線通信系統(tǒng)實(shí)例
1.5.1 無線尋呼系統(tǒng)
1.5.2 蜂窩電話
1.5.3 集群通信系統(tǒng)
1.5.4 無繩電話
1.5.5 無線局域網(wǎng)
1.5.6 個(gè)人域網(wǎng)
1.5.7 固定無線接入
1.6 無線通信面臨的技術(shù)挑戰(zhàn)
習(xí)題
第2章 無線通信基礎(chǔ)
2.1 無線信道傳播概述
2.1.1 電磁波的基本知識
2.1.2 無線電波的傳播方式
2.1.3 電磁波的極化
2.2 大尺度路徑損耗
2.2.1 概述
2.2.2 自由空間傳播模型
2.2.3 輻射電場與功率的關(guān)系
2.2.4 電磁波基本傳播機(jī)制
2.2.5 無線信道傳輸損耗模型
2.3 小尺度衰落和多徑效應(yīng)
2.3.1 小尺度多徑傳播
2.3.2 多徑信道的沖激響應(yīng)模型
2.3.3 無線多徑信道特性測量
2.3.4 無線多徑信道特性參數(shù)
2.3.5 小尺度衰落信道類型
2.3.6 陰影衰落和衰落儲備
習(xí)題
第3章 無線通信基本技術(shù)
3.1 信源編碼
3.1.1 語音編碼
3.1.2 數(shù)據(jù)壓縮編碼
3.2 信道編碼
3.2.1 信道編碼的基本概念
3.2.2 線性分組碼
3.2.3 循環(huán)碼
3.2.4 卷積碼
3.2.5 Turb0編碼
3.3 調(diào)制技術(shù)
3.3.1 調(diào)制技術(shù)概述
3.3.2 最小頻移鍵控(MSK)
3.3.3 x/4QPSK
3.3.4 正交振幅調(diào)制(QAM)技術(shù)
3.3.5 正交頻分復(fù)用調(diào)制
3.4 多址技術(shù)
3.4.1 頻分多址(FDMA)
3.4.2 時(shí)分多址(TDMA)
3.4.3 空分多址(SDMA)
3.4.4 擴(kuò)頻多址(SSMA)/碼分多址(CDMA)
3.4.5 分組無線電(PR)/隨機(jī)多址(RA)
3.5 抗衰落技術(shù)
3.5.1 分集接收
3.5.2 均衡技術(shù)
3.5.3 RAKE接收技術(shù)
習(xí)題
第4章 移動通信網(wǎng)絡(luò)技術(shù)
4.1 概述
4.1.1 移動通信的概念及特點(diǎn)
4.1.2 移動通信系統(tǒng)的基本組成
4.1.3 移動通信的分類
4.2 頻率復(fù)用技術(shù)和系統(tǒng)容量
4.2.1 頻率復(fù)用技術(shù)
4.2.2 干擾和系統(tǒng)容量
4.3 移動性管理
4.3.1 位置管理
4.3.2 切換控制
4.4 蜂窩通信網(wǎng)絡(luò)規(guī)劃
4.4.1 蜂窩網(wǎng)絡(luò)規(guī)劃的主要內(nèi)容
4.4.2 蜂窩無線網(wǎng)絡(luò)規(guī)劃流程
4.4.3 蜂窩系統(tǒng)業(yè)務(wù)量描述與業(yè)務(wù)量估計(jì)
4.4.4 蜂窩無線網(wǎng)絡(luò)設(shè)計(jì)
習(xí)題
第5章 無線通信系統(tǒng)
5.1 GSM移動通信系統(tǒng)
5.1.1 概述
5.1.2 GSM無線子系統(tǒng)的結(jié)構(gòu)原理
5.1.3 GSM系統(tǒng)的主要規(guī)格參數(shù)
5.1.4 GSM邏輯信道
5.1.5 GSM嗩結(jié)構(gòu)
5.1.6 語音編碼和信道編碼
5.1.7 GSM安全性管理
5.1.8 GPRS通用分組無線業(yè)務(wù)
5.2 CDMA蜂窩移動通信系統(tǒng)
5.2.1 IS-95CDMA系統(tǒng)
5.2.2 IS-95系統(tǒng)的無線傳輸
5.2.3 CDMA系統(tǒng)的功率控制
5.2.4 CDMA系統(tǒng)的軟切換
5.3 第三代移動通信系統(tǒng)
5.3.1 系統(tǒng)概述
5.3.2 WCDMA系統(tǒng)
5.3.3 TD-SCDMA系統(tǒng)
5.3.4 CDMA2000系統(tǒng)
5.4 衛(wèi)星通信
5.5 無線局域網(wǎng)
5.5.1 無線局域網(wǎng)的組成及組網(wǎng)
5.5.2 IEEE802.1 1無線局域網(wǎng)的協(xié)議體系
5.6 其他無線通信系統(tǒng)
5.6.1 藍(lán)牙技術(shù)
5.6.2 短波通信
5.6.3 無線射頻識別技術(shù)(RFID)
習(xí)題
第6章 無線通信新技術(shù)
6.1 軟件無線電技術(shù)
6.1.1 軟件無線電的概念
6.1.2 軟件無線電的特點(diǎn)
6.1.3 軟件無線電的關(guān)鍵技術(shù)
6.1.4 軟件無線電的應(yīng)用
6.2 超寬帶無線技術(shù)
6.2.1 超寬帶的概念
6.2.2 超寬帶技術(shù)的主要特點(diǎn)
6.2.3 超寬帶的關(guān)鍵技術(shù)
6.2.4 超寬帶與其他近距離無線通信技術(shù)的比較
6.2.5 超寬帶的應(yīng)用
6.2.6 超寬帶的發(fā)展趨勢
6.3 智能天線技術(shù)
6.3.1 智能天線的組成
6.3.2 智能天線的主要功能
6.3.3 智能天線的分類
6.3.4 智能天線的算法
6.3.5 智能天線的應(yīng)用
6.3.6 智能天線存在的問題及發(fā)展
6.4 WiMAX技術(shù)
6.4.1 WiMAX技術(shù)概述
6.4.2 WiMAX中的先進(jìn)技術(shù)
6.4.3 WiMAX與其他接入技術(shù)比較
6.4.4 WiMAX的現(xiàn)狀、應(yīng)用及發(fā)展
6.5 認(rèn)知無線電技術(shù)
6.5.1 認(rèn)知無線電技術(shù)的發(fā)展背景
6.5.2 認(rèn)知無線電的歷史和特征
6.5.3 認(rèn)知無線電的應(yīng)用場景
6.5.4 認(rèn)知無線電的關(guān)鍵技術(shù)
習(xí)題
附錄A帶通信號的基帶等效表示
附錄B式(2-3-28)的證明
附錄C無線通信中常用英文縮略詞
參考文獻(xiàn)
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