Reflect array Antenna pdf版本

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Reflect array Antenna 反射阵列天线英文原版文献,pdf版
REFLECTARRAY ANTENNAS IEEE Pr 445 Hoes la Piscataway. NJ 08854 IEEE Press editorial board Mohamed e. El-Hawary, Editor in Chief R. bari T.G. Croda R.J. Herrick S. Basu S. Farshchi S.V. Kartalopoulos A. Chatterjee B.M. Hammeri M.S. Newman T Chen Kenneth Moore, Director of IEEE Book and Information Services(BIS Catherine Faduska, Senior Acquisitions editor Jeanne audino, Project editor IEEE Antennas and Propagation society, sponsor IEEE APS Liaison to IEEE Press. robert mailloux Technical reviewers Richard M. Dickinson. OFF EARTH-WPT Jeffrey s herd, MIT Yahya rahmat-Samii, UCLA REFLECTARRAY ANTENNAS John Huang Jose A encinar IEEE Antennas and Propagation Society, Sponsor ◆EEE IEEE PRESS BICENTENNIA 18。7 傅 WILEY 2oo72 BICENTENNIAL WILEY-INTERSCIENCE A John Wiley Sons, Inc, Publication Copyright o 2008 by Institute of Electrical and Electronics Engineers. All rights reserved Published by John Wiley sons, Inc, Hoboken, New Jersey Published simultaneously in Canada No part of this publication may be reproduced, stored in a retrieval system, or transmitted in any form or by any means, electronic, mechanical, photocopying, recording, scanning, or otherwise, except as permitted under section 107 or 108 of the 1976 United States Copyright Act, without either the prior written permission of the Publisher, or authorization through payment of the appropriate per-copy fee to the Copyright Clearance Center, Inc, 222 Rosewood Drive, Danvers, MA 01923, (978)750-8400, fax(978)750-4470, or on the web at www.copyright.comRequeststothePublisherforpermissionshouldbeaddressedtothe Permissions Department, John Wiley sons, Inc, 111 River Street, Hoboken, NJ 07030 (201)748-6011,fax(201)748-6008,oronlineat Limit of Liability/Disclaimer of Warranty: While the publisher and author have used their best efforts in preparing this book, they make no representations or warranties with respect to the accuracy or completeness of the contents of this book and specifically disclaim any implied arranties of merchantability or fitness for a particular purpose no warranty may be created or extended by sales representatives or written sales materials. The advice and strategies contained herein may not be suitable for your situation. You should consult with a professional where appropriate. Neither the publisher nor author shall be liable for any loss of profit or any other commercial damages, including but not limited to special, incidental, consequential, or other damages For general information on our other products and services or for technical support, please contact our Customer Care Department within the United States at(800)762-2974, outside the United States at (317)572-3993 or fax(317)572-4002 Wiley also publishes its books in a variety of electronic formats. Some content that appears in print may not be available in electronic formats. For more information about Wiley products Wiley Bicentennial Logo: Richard J Pacifico Library of Congress Cataloging-in-Publication Data is available. ISBN:978-0-470-08491-5 Printed in the united states of america 1098765432 CONTENTS Preface Acknowledgments 1. Introduction to Reflectarray Antenna 1.1 Description of reflectarray 1. 2 Printed Reflectarray 1.2.1 Advantages of Reflectarray 1.2.2 Disadvantage of reflectarray 3346 References 2. Development History 2.1 Early Innovations and Developments 9 2.1.1 Waveguide reflectarray in the 1960s 2.1.2 Spiralphase Reflectarray in the 1970s 2.1.3 Microstrip Reflectarray in the 1980s 2.2 Recent Developments 2. 3 Comparison with Similar Technologies 20 2.3.1 Array Lens 20 2.3.2 Fresnel-Zone plate reflector 22 References 24 3. Antenna Analysis Techniques 27 3.1 Introduction 27 3.2 Overview of analysis techniques 29 3. 3 Phase-Shift distribution 34 3.4 Analysis of Rectangular Patches with Attached Stubs 35 3.5 Full-Wave Analysis of multilayer Periodic structures 38 3.5.1 Characterization of a periodic interface as a Building block 40 CONTENTS 3.5.2 Analysis of Reflectarray Elements in a Periodic Environment 3.6 Phase-Shifter Element Based on Single and Stacked Variable-Sized patches 3.6.1 Single-Layer Elements 49 3.6.2 Multilayer elements 50 3.6.3 Measurements of phase-Shift and losses in Waveguide simulator 3.7 Phase-Shifter Element Based on Aperture-Coupled Patches 3.7.1 Design of Reflectarray Element 3.7.2 Phase Delay curves 57 3. 8 Feed Model and Radiation patterns 64 3.8.1 Field on the reflectarray elements 66 3.8.2 Radiation patterns 3.8.3 Experimental results 3.8.4 Gain Computation 73 References 74 4. Practical Design Approach 79 4.1 Element effects and selection 79 4.1.1 Element reflection phase 4.1.2 Element beamwidth 81 4.13 Element bandwidth 4.1.4 Element Reflection Efficiency 82 4.1.5 Element Spacing 83 4.2 Path Length and Phase Delay Calculation 84 4.3 Radiation Pattern Calculation 85 4.4 Reflectarray geometry design 86 4.5 Reflectarray Power Handling 91 References 91 5. Broadband Techniques 93 5.1 Bandwidth Limitation by the Reflectarray Element 93 5.2 Broadband Phase-Shifter Elements 5 5.2.1 Aperture-Coupled Patches 96 5.2. 2 Variable-Sized stacked patches 97 CONTENTS VIl 5.2.3 Other Reflectarray Elements for Bandwidth Improvement 5.3 Bandwidth Limitation by Differential Spatial Phase Delay 100 5.4 Broadband Techniques for Large Reflectarrays 104 5.4.1 True Time delay reflectarrays 106 5.4.2 Compensation of phase delay in a frequency band 108 5.4.3 Multifacet Reflectarrays 112 References 6. Dual-Band Reflectarray 119 6.1 Dual-Band with a Single-Layer Substrate 119 6.1.1 Circular or Dual-Linear polarization with two Widely Separated Frequencies 6.1.2 Circular Polarization with Two Closely separated Frequencies 120 6.1.3 Linear Polarization with two Widely Separated Frequencies 121 6.1.4 Linear Polarization with Two Closely Separated Frequencies 123 6.2 Dual-Band with Two-Layer Substrates 23 6.2.1 High-Frequency Elements above Low-Frequency Elements 124 6.2.2 LOw-Frequency Elements above High-Frequency Elements 125 6.3 Multiband reflectarray with More than Two Frequencies 131 References 134 7. Recent and Future Applications 137 7.1 Inflatable/Thin-Membrane Reflectarrays 137 7.1.1 X-Band 1-m Inflatable Reflectarray 138 7.1.2 Ka-Band 3-m Inflatable Reflectarray 139 7.2 Contoured Beam Reflectarrays for Space Applications 143 7.2.1 Pattern Synthesis 145 7.2.2 Practical Designs 150 7.3 Multi-Beam Reflectarrays 169 7.4 Amplifying Reflectarray 177 7.5 Folded Compact Reflectarray 182

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