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给大家介绍一本关于WIMAX好书

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发表于 2007-10-28 15:57
<p>Part I Overview of WiMAX 1<br/>Chapter 1 Introduction to Broadband Wireless 3<br/>1.1 Evolution of Broadband Wireless 5<br/>1.1.1 Narrowband Wireless Local-Loop Systems 5<br/>1.1.2 First-Generation Broadband Systems 6<br/>1.1.3 Second-Generation Broadband Systems 8<br/>1.1.4 Emergence of Standards-Based Technology 8<br/>1.2 Fixed Broadband Wireless: Market Drivers and Applications 10<br/>1.3 Mobile Broadband Wireless: Market Drivers and Applications 12<br/>1.4 WiMAX and Other Broadband Wireless Technologies 13<br/>1.4.1 3G Cellular Systems 14<br/>1.4.2 Wi-Fi Systems 15<br/>1.4.3 WiMAX versus 3G and Wi-Fi 16<br/>1.4.4 Other Comparable Systems 17<br/>1.5 Spectrum Options for Broadband Wireless 17<br/>1.6 Business Challenges for Broadband Wireless and WiMAX 21<br/>1.7 Technical Challenges for Broadband Wireless 23<br/>1.7.1 Wireless Radio Channel 24<br/>1.7.2 Spectrum Scarcity 25<br/>1.7.3 Quality of Service 26<br/>1.7.4 Mobility 28<br/>1.7.5 Portability 29<br/>1.7.6 Security 29<br/>1.7.7 Supporting IP in Wireless 30<br/>1.7.8 Summary of Technical Challenges 31<br/>1.8 Summary and Conclusions 32<br/>1.9 Bibliography 32</p><p>Chapter 2 Overview of WiMAX 33<br/>2.1 Background on IEEE 802.16 and WiMAX 33<br/>2.2 Salient Features of WiMAX 37<br/>2.3 WiMAX Physical Layer 39<br/>2.3.1 OFDM Basics 39<br/>2.3.2 OFDM Pros and Cons 40<br/>2.3.3 OFDM Parameters in WiMAX 41<br/>2.3.4 Subchannelization: OFDMA 43<br/>2.3.5 Slot and Frame Structure 44<br/>2.3.6 Adaptive Modulation and Coding in WiMAX 46<br/>2.3.7 PHY-Layer Data Rates 46<br/>2.4 MAC-Layer Overview 47<br/>2.4.1 Channel-Access Mechanisms 48<br/>2.4.2 Quality of Service 49<br/>2.4.3 Power-Saving Features 51<br/>2.4.4 Mobility Support 52<br/>2.4.5 Security Functions 53<br/>2.4.6 Multicast and Broadcast Services 54<br/>2.5 Advanced Features for Performance Enhancements 55<br/>2.5.1 Advanced Antenna Systems 55<br/>2.5.2 Hybrid-ARQ 56<br/>2.5.3 Improved Frequency Reuse 56<br/>2.6 Reference Network Architecture 57<br/>2.7 Performance Characterization 59<br/>2.7.1 Throughput and Spectral Efficiency 60<br/>2.7.2 Sample Link Budgets and Coverage Range 60<br/>2.8 Summary and Conclusions 61<br/>2.9 Bibliography 63</p><br/><br/>
[此贴子已经被作者于2007-10-28 16:13:30编辑过]

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发表于 2007-10-28 16:39
<p>Part II Technical Foundations of WiMAX 65<br/>Chapter 3 The Challenge of Broadband Wireless Channels 67<br/>3.1 Communication System Building Blocks 68<br/>3.2 The Broadband Wireless Channel: Pathloss and Shadowing 69<br/>3.2.1 Pathloss 70<br/>3.2.2 Shadowing 74<br/>3.3 Cellular Systems 77<br/>3.3.1 The Cellular Concept 78</p><p>3.3.2 Analysis of Cellular Systems 79<br/>3.3.3 Sectoring 82<br/>3.4 The Broadband Wireless Channel: Fading 84<br/>3.4.1 Delay Spread and Coherence Bandwidth 86<br/>3.4.2 Doppler Spread and Coherence Time 87<br/>3.4.3 Angular Spread and Coherence Distance 90<br/>3.5 Modeling Broadband Fading Channels 91<br/>3.5.1 Statistical Channel Models 91<br/>3.5.2 Statistical Correlation of the Received Signal 95<br/>3.5.3 Empirical Channel Models 99<br/>3.6 Mitigation of Fading 104<br/>3.6.1 Narrowband (Flat) Fading 105<br/>3.6.2 Broadband Fading 107<br/>3.6.3 Spread Spectrum and Rake Receivers 108<br/>3.6.4 Equalization 109<br/>3.6.5 The Multicarrier Concept 110<br/>3.7 Summary and Conclusions 110<br/>3.8 Bibliography 110<br/>Chapter 4 Orthogonal Frequency Division Multiplexing 113<br/>4.1 Multicarrier Modulation 114<br/>4.2 OFDM Basics 117<br/>4.2.1 Block Transmission with Guard Intervals 117<br/>4.2.2 Circular Convolution and the DFT 117<br/>4.2.3 The Cyclic Prefix 119<br/>4.2.4 Frequency Equalization 122<br/>4.2.5 An OFDM Block Diagram 122<br/>4.3 An Example: OFDM in WiMAX 123<br/>4.4 Timing and Frequency Synchronization 124<br/>4.4.1 Timing Synchronization 126<br/>4.4.2 Frequency Synchronization 127<br/>4.4.3 Obtaining Synchronization in WiMAX 130<br/>4.5 The Peak-to-Average Ratio 131<br/>4.5.1 The PAR Problem 131<br/>4.5.2 Quantifying the PAR 132<br/>4.5.3 Clipping: Living with a High PAR 135<br/>4.5.4 PAR-Reduction Strategies 140<br/>4.6 OFDM’s Computational Complexity Advantage 142<br/>4.7 Simulating OFDM Systems 144</p><p>4.8 Summary and Conclusions 145<br/>4.9 Bibliography 145<br/>Chapter 5 Multiple-Antenna Techniques 149<br/>5.1 The Benefits of Spatial Diversity 150<br/>5.1.1 Array Gain 150<br/>5.1.2 Diversity Gain and Decreased Error Rate 152<br/>5.1.3 Increased Data Rate 153<br/>5.1.4 Increased Coverage or Reduced Transmit Power 154<br/>5.2 Receive Diversity 154<br/>5.2.1 Selection Combining 155<br/>5.2.2 Maximal Ratio Combining 156<br/>5.3 Transmit Diversity 157<br/>5.3.1 Open-Loop Transmit Diversity 158<br/>5.3.2 Nt × Nr Transmit Diversity 160<br/>5.3.3 Closed Loop-Transmit Diversity 164<br/>5.4 Beamforming 169<br/>5.4.1 DOA-Based Beamforming 170<br/>5.4.2 Eigenbeamforming 171<br/>5.5 Spatial Multiplexing 174<br/>5.5.1 Introduction to Spatial Multiplexing 174<br/>5.5.2 Open-Loop MIMO: Spatial Multiplexing<br/>without Channel Feedback 175<br/>5.5.3 Closed-Loop MIMO: The Advantage of Channel<br/>Knowledge 179<br/>5.6 Shortcomings of Classical MIMO Theory 181<br/>5.6.1 Multipath 182<br/>5.6.2 Uncorrelated Antennas 182<br/>5.6.3 Interference-Limited MIMO Systems 183<br/>5.7 Channel Estimation for MIMO-OFDM 184<br/>5.7.1 Preamble and Pilot 185<br/>5.7.2 Time versus Frequency-Domain Channel Estimation 186<br/>5.8 Channel Feedback 189<br/>5.9 Advanced Techniques for MIMO 190<br/>5.9.1 Switching Between Diversity and Multiplexing 190<br/>5.9.2 Multiuser MIMO Systems 190<br/>Chapter 6 Orthogonal Frequency Division Multiple Access 199<br/>6.1 Multiple-Access Strategies for OFDM 200</p><p>6.1.1 Random Access versus Multiple Access 201<br/>6.1.2 Frequency Division Multiple Access 202<br/>6.1.3 Time Division Multiple Access—“Round Robin” 202<br/>6.1.4 Code Division Multiple Access 202<br/>6.1.5 Advantages of OFDMA 203<br/>6.2 Multiuser Diversity and Adaptive Modulation 204<br/>6.2.1 Multiuser Diversity 205<br/>6.2.2 Adaptive Modulation and Coding 206<br/>6.3 Resource-Allocation Techniques for OFDMA 209<br/>6.3.1 Maximum Sum Rate Algorithm 210<br/>6.3.2 Maximum Fairness Algorithm 211<br/>6.3.3 Proportional Rate Constraints Algorithm 212<br/>6.3.4 Proportional Fairness Scheduling 213<br/>6.3.5 Performance Comparison 214<br/>6.4 OFDMA in WiMAX: Protocols and Challenges 216<br/>6.4.1 OFDMA Protocols 216<br/>6.4.2 Cellular OFDMA 218<br/>6.4.3 Limited Diversity Gains 219<br/>6.5 Summary and Conclusions 219<br/>6.6 Bibliography 220<br/>Chapter 7 Networking and Services Aspects of Broadband Wireless 223<br/>7.1 Quality of Service 224<br/>7.1.1 QoS Mechanisms in Packet Networks 225<br/>7.1.2 IP QoS Technologies 227<br/>7.2 Multimedia Session Management 233<br/>7.2.1 Session Initiation Protocol 234<br/>7.2.2 Real-Time Transport Protocol 240<br/>7.3 Security 241<br/>7.3.1 Encryption and AES 242<br/>7.3.2 Public Key Infrastructure 245<br/>7.3.3 Authentication and Access Control 247<br/>7.4 Mobility Management 249<br/>7.4.1 Location Management 250<br/>7.4.2 Handoff Management 251<br/>7.4.3 Mobile IP 254<br/>7.5 IP for Wireless: Issues and Potential Solutions 260<br/>7.5.1 TCP in Wireless 260<br/>7.5.2 Header Compression 263</p><p>7.6 Summary and Conclusions 265<br/>7.7 Bibliography 266</p><p>Part III Understanding WiMAX and Its Performance 269<br/>Chapter 8 PHY Layer of WiMAX 271<br/>8.1 Channel Coding 272<br/>8.1.1 Convolutional Coding 273<br/>8.1.2 Turbo Codes 275<br/>8.1.3 Block Turbo Codes and LDPC Codes 278<br/>8.2 Hybrid-ARQ 278<br/>8.3 Interleaving 279<br/>8.4 Symbol Mapping 280<br/>8.5 OFDM Symbol Structure 280<br/>8.6 Subchannel and Subcarrier Permutations 282<br/>8.6.1 Downlink Full Usage of Subcarriers 283<br/>8.6.2 Downlink Partial Usage of Subcarriers 286<br/>8.6.3 Uplink Partial Usage of Subcarriers 287<br/>8.6.4 Tile Usage of Subcarriers 287<br/>8.6.5 Band Adaptive Modulation and Coding 289<br/>8.7 Slot and Frame Structure 290<br/>8.8 Transmit Diversity and MIMO 292<br/>8.8.1 Transmit Diversity and Space/Time Coding 292<br/>8.8.2 Frequency-Hopping Diversity Code 295<br/>8.9 Closed-Loop MIMO 296<br/>8.9.1 Antenna Selection 297<br/>8.9.2 Antenna Grouping 298<br/>8.9.3 Codebook Based Feedback 299<br/>8.9.4 Quantized Channel Feedback 299<br/>8.9.5 Channel Sounding 299<br/>8.10 Ranging 300<br/>8.11 Power Control 302<br/>8.12 Channel-Quality Measurements 303<br/>8.13 Summary and Conclusions 304<br/>8.14 Bibliography 304<br/>Chapter 9 MAC Layer of WiMAX 307<br/>9.1 Convergence Sublayer 309</p><p>9.1.1 Packet Header Suppression 309<br/>9.2 MAC PDU Construction and Transmission 312<br/>9.3 Bandwidth Request and Allocation 316<br/>9.4 Quality of Service 317<br/>9.4.1 Scheduling Services 317<br/>9.4.2 Service Flow and QoS Operations 318<br/>9.5 Network Entry and Initialization 319<br/>9.5.1 Scan and Synchronize Downlink Channel 319<br/>9.5.2 Obtain Uplink Parameters 320<br/>9.5.3 Perform Ranging 320<br/>9.5.4 Negotiate Basic Capabilities 322<br/>9.5.5 Register and Establish IP Connectivity 322<br/>9.5.6 Establish Service Flow 323<br/>9.6 Power-Saving Operations 324<br/>9.6.1 Sleep Mode 325<br/>9.6.2 Idle Mode 327<br/>9.7 Mobility Management 327<br/>9.7.1 Handoff Process and Cell Reselection 329<br/>9.7.2 Macro Diversity Handover and Fast BS Switching 330<br/>9.8 Summary and Conclusions 332<br/>9.9 Bibliography 333<br/>Chapter 10 WiMAX Network Architecture 335<br/>10.1 General Design Principles of the Architecture 336<br/>10.2 Network Reference Model 337<br/>10.2.1 ASN Functions, Decompositions, and Profiles 338<br/>10.2.2 CSN Functions 340<br/>10.2.3 Reference Points 341<br/>10.3 Protocol Layering Across a WiMAX Network 341<br/>10.4 Network Discovery and Selection 344<br/>10.5 IP Address Assignment 344<br/>10.6 Authentication and Security Architecture 345<br/>10.6.1 AAA Architecture Framework 346<br/>10.6.2 Authentication Protocols and Procedure 346<br/>10.6.3 ASN Security Architecture 349<br/>10.7 Quality-of-Service Architecture 349<br/>10.8 Mobility Management 352<br/>10.8.1 ASN-Anchored Mobility 354</p><p>10.8.2 CSN-Anchored Mobility for IPv4 356<br/>10.8.3 CSN Anchored Mobility for IPv6 358<br/>10.9 Radio Resource Management 359<br/>10.10 Paging and Idle-Mode Operation 360<br/>10.11 Summary and Conclusions 362<br/>10.12 Bibliography 362<br/>Chapter 11 Link-Level Performance of WiMAX 365<br/>11.1 Methodology for Link-Level Simulation 366<br/>11.2 AWGN Channel Performance of WiMAX 370<br/>11.3 Fading Channel Performance of WiMAX 373<br/>11.3.1 Channel Estimation and Channel Tracking 381<br/>11.3.2 Type I and Type II Hybrid-ARQ 385<br/>11.4 Benefits of Multiple-Antenna Techniques in WiMAX 387<br/>11.4.1 Transmit and Receive Diversity 387<br/>11.4.2 Open-Loop and Closed-Loop MIMO 389<br/>11.5 Advanced Receiver Structures and Their Benefits<br/>for WiMAX 396<br/>11.6 Summary and Conclusions 398<br/>11.7 Bibliography 399<br/>Chapter 12 System-Level Performance of WiMAX 401<br/>12.1 Wireless Channel Modeling 402<br/>12.2 Methodology for System-Level Simulation 404<br/>12.2.1 Simulator for WiMAX Networks 405<br/>12.2.2 System Configurations 410<br/>12.3 System-Level Simulation Results 412<br/>12.3.1 System-Level Results of Basic Configuration 412<br/>12.3.2 System-Level Results of Enhanced Configurations 416<br/>12.4 Summary and Conclusions 421<br/>12.5 Appendix: Propagation Models 422<br/>12.5.1 Hata Model 422<br/>12.5.2 COST-231 Hata Model 424<br/>12.5.3 Erceg Model 424<br/>12.5.4 Walfish-Ikegami Model 426<br/>12.6 Bibliography 427<br/>Acronyms 429<br/>Index 439</p><br/><br/>

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发表于 2007-12-10 09:14
<p>非常好,谢谢!!!!!!!!!!!!!!!!!</p>

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发表于 2007-12-20 11:30
好东东,谢谢分享

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发表于 2008-1-2 09:54
好书 谢谢

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发表于 2008-1-6 12:11
good,thanks

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发表于 2008-3-19 22:57
<p>谢谢楼主大公无私.</p>

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发表于 2008-4-3 13:03
全英文的阿,太强了,一定要顶

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发表于 2008-4-20 10:34
<p>好东东,谢谢分享<br/></p><p></p>

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发表于 2008-4-21 16:44
<p>顶!!!</p>

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发表于 2008-6-10 17:45
好书啊,但英文很累啊,不懂啊

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发表于 2008-6-16 10:36
<p>嗯,这书要买可 贵了=)</p>

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