MIMO-OFDM Wireless Communications with MATLAB 无水印原版pdf

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MIMO-OFDM WIRELESS COMMUNICATIONS WITH MATLABC MIMO-OFDM WIRELESS COMMUNICATIONS WITH MATLA③ Yong Soo Cho Chung-Ang University, Republic of Korea Jaekwon Kim Yonsei university, Republic of Korea Won Young Yang Chung-Ang University, Republic of Korea Chung g. Kang Korea University, Republic of Korea ◆lEE EEE PRESS John wiley sons(asia)Pte Ltd Copyright o 2010 ohn Wilcy sons(Asia) Plc Ltd, 2 Clementi Loop, #02-01 Singapore 129809 VisitourHomePageonwww.wiley.com All Rights Reserved. No part of this publication may be reproduced, stored in a retrieval systcm or transmitted in any orm or by any means, electronic, mechanical, photocopying, recording, scanning, or otherwise, except as expressly permitted by law, without either the prior written permission of the Publisher, or authorization through payment of the appropriate photocopy fee to the Copyright Clearance Center. Requests for permission should be addressed to the Publisher, John Wiley Sons(Asia)Pte Ltd, 2 Clementi Loop, #02-01, Singapore 129809, tel: 65-64632400, fax65-64646912,emailenquiry@wiley.com Designations used by companies to distinguish their products are often claimed as trademarks. All brand names and product nancs used in this book are trade namcs, scrvice marks, trademarks or registered trademarks of thcir respective owners The Publisher is not associated with any product or vendor mentioned in this book. All trademarks referred to in the text of this publication are the property of their respective owners MATLAB is a trademark of The math Works, Inc. and is used with permission. The math Works does not warrant the ccuracy of the lext or exercises in this book. This books usc or discussion of MATLAB softwarc or related products does not constitute endorsement or sponsorship by The Math Works of a particular pedagogical approach or particular use of the MATLAB software This publication is designed to provide accurate and authoritative information in regard to the subject matter covered s sold on the understanding that the Publisher is not engaged in rendering professional scrvices. If professional advice or other expert assistance is required the services of a competent professional should be sought Other Wiley Editorial offices John Wiley sons, Ltd, The Atrium, Southcrn Gatc, Chichester, West Sussex, Po19 8SQ, UK John wilcy sons Inc, 111 River Street, Hoboken, NJ 07030, USA Jossey-Bass, 989 Market Street, San Francisco, Ca 94103-1741, USA Wilev-VCH Verlag gmbh. Boschstrasse 12 D-69469 Weinheim Germany John wiley Sons Australia ltd, 42 McDougall Street, Milton, Queensland 4064, Australia John Wiley sons Canada Ltd, 5353 Dundas street West, Suite 400, Toronto, ONT, M9B 6H8, Canada Wiley also publishes its books in a variety of electronic formats. Some content that appears in print may not be available in electronic books Library of Congress Cataloging-in-Publication Data MIMO-OFDM wireless communications with MaTLAB/ Yong Soo cho.let al. cm Includes bibliographical references and index ISBN9780-470-825617( cloth Orthogonal frequcncy division multiplexing. 2. MIMO systcms. 3. MATLAB. I Cho. Yong Soo TK5103.484M562010 621.384dc22 2010013156 Print isbn:978-0-470-8256l-7 ePDF ISBN:978-0-470-825624 oBook IsBN:978-0-470-82563-1 Typeset in 10/12pt Times by Thomson Digital, Noida, India This book is printed on acid-free paper responsibly manufactured from sustainable forestry in which at least two trees are planted for cach one used for paper productio To our parents and families who love and support u anC to our students who enriched our knowledge Contents Preface X Limits of Liability and disclaimer of Warranty of Software The wireless Channel: Propagation and fading 1. 1 Largc-Scale fading 4 General Path Loss Model 4 1.1.2 Okumura/ Hata model 1.1.3 EEE 802.16d Model 1. 2 Small-Scale fading 15 1.2.1 Parameters for Small-Scale fadin 15 1.2.2 Timc-Dispcrsivc vs. Frcquency-Dispcrsivc Fading 16 1.2. 3 Statistical Characterization and generation of fading channel 2 SiSO Channel models 25 2.1 Indoor channel models 25 2.1.1 General Indoor Channel models 26 2. 1.2 eeE 802.11 Channel model 28 2. 1. 3 Saleh-Valenzuela(s-V) Channel Model 30 2.1 4 UWb Channel model 35 2.2 Outdoor Channel models 40 2.2.1 FWgn Model 41 2.2.2 Jakes model 50 2.2. 3 Ray-Based Channel Model 2. 2. 4 Frequency-Selective Fading Channel Model 2.2.5 SUI Channel model 3 MiMo Channel models 3.1 Statistical mimo model 71 3.1.1 Spatial Correlation 3.1.2 PAS Model 76 3.2 I-MEtRa MIMO Channel model 84 3.2.1 Statistical model of Correlated mimo Fading channel 3.2.2 Generation of Correlated MIMO Channel Coefficients 88 Contents 3.23 I-MEtRA MIMO Channel model 3.2.4 3GPP MIMO Channel model 94 3.3 SCM MIMO Channel Model 97 3.3.1 SCM Link-Level Channel parameters 98 3.3.2 SCM Link-Level channel modelin l02 3.3.3 Spatial Corrclation of Ray-Bascd Channel Model 105 4 Introduction to ofdm 111 4.1 Single-Carrier vs. Multi-Carrier Transmission 111 4.1.1 Single-Carrier Transmission l11 4.1.2 Multi-Carrier Transmission 115 4.1.3 Single-Carrier vs. Multi-Carrier Transmission l20 4.2 Basic Principle of OFDM 121 4.2.1 OFDM Modulation and demodulation 121 4.2.2 OFDM Guard Interval 126 4.2.3 OFDM Guard Band 132 4.2.4 beR of ofdm scheme 136 4.2.5 Water-Filling Algorithm for Frequency-Domain Link adaptation 139 4.3 Coded ofdm 142 4.4 OFDMA: Multiplc Acccss Extensions of OFDM 143 4.4.1 Resource Allocation- Subchannel Allocation Types 145 4.4.2 Resource Allocation- Subchannclization l46 4.5 Duplex 150 5 Synchronization for OFDM 153 5.1 Effect of sto 153 5.2 Effect of CFO 5.2.1 Effect of Integer Carrier Frequency Offset(IFO) 159 5.2.2 Effect of fractional Carrier Frequency Offset(FFO) 160 5.3 Estimation Techniques for StO 162 5.3.1 Time-Domain Estimation Techniques for Sto 162 5.3.2 Frequency-Domain Estimation Techniques for StO 68 5.4 Estimation Techniques for CFO 170 5.4.1 Time-Domain Estimation Techniques for cFo 170 5.4.2 Frcquency-Domain Estimation Tcchniques for CFO l73 5.5 Effect of Sampling Clock Offset 77 5.5.1 Effect of Phase Offset in Sampling Clocks l77 5.5.2 Effect of Frequency Offset in Sampling Clocks 178 5.6 Compensation for Sampling Clock Offsct 178 5.7 Synchronization in Cellular Systems 180 5.7.1 Downlink Synchronization 180 5.7.2 Uplink synchronization 183 6 Channel Estimation 187 6.1 Pilot structure 187 6.1.1 Block Type l87

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