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Wireless Communication Using Dual Antenna Arrays (The International Series in Engineering and Computer Science) PDF

144 Pages·1999·3.24 MB·English
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Team LRN WIRELESS COMMUNICATION USING DUAL ANTENNA ARRAYS Team LRN THE KLUWER INTERNATIONAL SERIES IN ENGINEERING AND COMPUTER SCIENCE Team LRN WIRELESS COMMUNICATION USING DUAL ANTENNA ARRAYS by Da-shan Shiu QUALCOMM, INC., U.S.A. KLUWER ACADEMIC PUBLISHERS NEW YORK, BOSTON, DORDRECHT, LONDON, MOSCOW Team LRN eBookISBN: 0-306-47327-5 Print ISBN: 0-792-38680-9 ©2002 Kluwer Academic Publishers New York, Boston, Dordrecht, London, Moscow All rights reserved No part of this eBook may be reproduced or transmitted in any form or by any means, electronic, mechanical, recording, or otherwise, without written consent from the Publisher Created in the United States of America Visit Kluwer Online at: http://www.kluweronline.com and Kluwer's eBookstore at: http://www.ebooks.kluweronline.com Team LRN To my parents Team LRN This page intentionally left blank Team LRN CONTENTS 1. FOREWORD xi 2. PREFACE xiii 3. ACKNOWLEDGMENTS xv 4. INTRODUCTION 1 1.1 Dual Antenna Array Systems........................................................ 1 1.2 Systems Having Multiple Antennas at Both the Transmitter and the Receiver...................................................................................2 1.3 Overview.......................................................................................3 5. BACKGROUND 7 2.1 Channel and Noise Model..............................................................8 2.2 Channel Capacity................................................................................9 2.3 Asymptotic Behavior of Channel Capacity................................ 11 2.4 Channel capacity when the receiver does not have CSI.............. 12 2.5 Discussion....................................................................................13 2.6 Summary......................................................................................14 Appendix ........................................................................... 15 Team LRN viii 6. SPATIAL FADING CORRELATION AND ITS EFFECTS ON CHANNEL CAPACITY 17 3.1 Introduction................................................................................. 17 3.2 Scatterer Model and Spatial Fading Correlation ......................... 19 3.3 Analysis of Channel Capacity.....................................................24 3.3.1Bounds on Channel Capacity................................... 26 3.3.2 Effective Degrees of Freedom.................................. 29 3.4 Simulation Results.......................................................................... 31 3.4.1 Simulation Algorithm................................................. 32 3.4.2Results......................................................................33 3.5 Two-Ring Model......................................................................... 39 3.6 Summary......................................................................................41 7. POWER-ALLOCATIONSTRATEGY 45 4.1 Introduction.................................................................................45 4.2 Power-Allocation Strategies........................................................ 48 4.2.1 Optimum Power-Allocation Strategy.......................48 4.2.2 Uniform Power-Allocation Strategy ........................50 4.2.3 Effects of Fading Correlation................................... 51 4.2.4 Asymptotical Behavior of Channel Capacity with Optimal Power Allocation................................................. 53 4.3 Blind Transmission Systems ....................................................... 54 4.3.1 Stochastic Water-Filling in the Downlink................ 55 4.3.2 Optimality of Uniform Power Allocation in the Uplink.............................................................56 4.4 Capacity Penalty From One-dimensional Processing of Multi-dimensional Signals........................................................... 57 4.4.1 ZF and MMSE Successive Interference Cancellation . 58 Team LRN ix 4.4.2 Downlink Analysis.....................................................60 4.4.3 Uplink Analysis........................................................... 61 4.5 Capacity Results............................................................................ 63 4.6 Summary......................................................................................65 8. LAYERED SPACE-TIME CODES: ANALYSIS AND DESIGN CRITERIA 69 5.1 Introduction................................................................................ 69 5.2 Space-Time Codes...................................................................... 71 5.2.1 Notation....................................................................71 5.2.2 Space-Time Codes with ML Decoding: Performance and Complexity.................................................................72 5.3 Layered Space-Time Architecture.............................................. 73 5.3.1Encoding ..................................................................73 5.3.2 Decoding .................................................................75 5.4 Error-Probability Analysis For Layered Space-Time Codes...... 77 5.4.1 Expressions for the Decision Variables.................... 77 5.4.2 Performance of HLST Codes................................... 78 5.4.3 Performance of DLST Codes...................................79 5.4.4 Performance Comparison: DLST vs. HLST............ 81 5.4.5 DLST Codes: Design Criteria and Trade-offs.......... 81 5.5 Operational Aspects of LST Codes............................................. 84 5.5.1ConvolutionalCodes as the Constituent Codes ....... 84 5.5.2 Block Codes as the Constituent Codes..................... 91 5.6 Summary......................................................................................95 Appendix I: ML Decoding Error Analysis ............................ 98 Appendix II: Accurate Computation of Average Pairwise Error Probability........................................................ 100 Team LRN

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Wireless Communication Using Dual Antenna Arrays is based on award-winning research conducted at the University of California, Berkeley. The information in this book will be vital to practicing engineers, industrial researchers, scientists, graduate and postgraduate researchers, and others working i
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