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Analysis and Design of Integrated Circuit-Antenna Modules.
【文件名】:06928@52RD_Analysis and Design of Integrated Circuit-Antenna Modules.part1.rar
【格 式】:rar
【大 小】:4000K
【简 介】:
【目 录】:
1 Introduction 1
Peter S. Hall and K. C. Gupta
1.1 Development of Circuit–Antenna Modules 1
1.2 Terminology Used in Circuit–Antenna Modules 3
1.3 Applications of Circuit–Antenna Modules 4
1.4 Glossary of Circuit–Antenna Module Types 6
1.5 Levels of Integration 6
1.6 The Design Process 14
1.7 Analytical Outcomes and Circuit–Antenna Module Performance
Parameters 16
1.8 Overview of the Book 17
References 20
2 Review of the CAD Process 23
K. C. Gupta and Peter S. Hall
2.1 The Design Process 23
2.2 CAD for Microwave Circuits 29
2.3 CAD for Printed Microwave Antennas 47
2.4 CAD Considerations for Integrated Circuit–Antenna Modules 61
2.5 Summary 67
References 67
3 Circuit Simulator Based Methods 72
Peter S. Hall, Vincent F. Fusco, and Martin J. Cryan
3.1 Introduction to Equivalent Circuit Simulation 72
3.2 Linear Simulation Using Equivalent Circuit Models 83
3.3 Nonlinear Simulation Using Equivalent Circuit Models 97
3.4 Conclusions 116
References 117
vii
4 Multiport Network Method 121
K. C. Gupta and Rajan P. Parrikar
4.1 Introduction: Network Modeling of Antennas 121
4.2 Multiport Network Model (MNM) for Microstrip Patches 122
4.3 MNM for Two-Layer Microstrip Antennas 147
4.4 MNM for Integrated Circuit–Antenna Modules 161
4.5 Summary and Remarks 167
References 168
5 Full Wave Analysis in the Frequency Domain 172
Raphael Gillard, M’hamed Drissi, and Jacques Citerne
5.1 Introduction 172
5.2 Lumped Elements in the Method of Moments 174
5.3 Analysis of Active Linear Circuits and Antennas 189
5.4 Extension of the Approach to Nonlinear Devices 211
5.5 Conclusion 217
References 219
6 Full Wave Electromagnetic Analysis in the Time Domain 222
Yongxi Qian and Tatsuo Itoh
6.1 Introduction 222
6.2 FDTD Fundamentals and Implementation Issues 224
6.3 FDTD Analysis of Passive Circuits and Antennas 241
6.4 Extended FDTD for Active Circuits and Integrated Antennas 249
References 256
7 Phase-Locking Dynamics in Integrated Antenna Arrays 259
Robert A. York
7.1 Introduction 259
7.2 Systems of Coupled Oscillators 260
7.3 Scanning by Edge Detuning 272
7.4 Externally Locked Arays 280
7.5 Phase Noise in Oscillator Arrays 283
7.6 PLL Techniques 291
7.7 Perspective 295
Appendix: Kurokawa’s Substitution 296
References 298
viii CONTENTS
8 Analysis and Design of Oscillator Grids and Arrays 301
Wayne A. Shiroma, Eric W. Bryerton, and Zoya Popovic´
8.1 Introduction 301
8.2 Full-Wave Modeling of Planar Grids 304
8.3 Grid Oscillator Analysis 308
8.4 Synthesis of the Optimum Grid Equivalent Circuit 314
8.5 Benchmarking Grid Oscillator Performance 317
8.6 Optimizing Grid Performance 320
8.7 Oscillator Design Using Power Amplifier Techniques 323
8.8 Conclusion 328
References 330
9 Analysis and Design Considerations for Monolithic Microwave
Circuit Transmit–Receive (T–R) Modules 333
Lawrence R. Whicker
9.1 Introduction 333
9.2 Present Developments on Active T–R Modules 341
9.3 T–R Module Design Considerations 342
9.4 Present Trends and Future Directions 350
References 357
10 Integrated Transmit–Receive Circuit–Antenna Modules for
Radio on Fiber Systems 358
Hooshang Ghafouri-Shiraz
10.1 System Requirements for Radio on Fiber 359
10.2 Optical Generation of Millimeter-Wave Signals 360
10.3 Optical Detection of Millimeter-Wave Signals 369
10.4 New Configurations for Radios on Fiber Systems 372
10.5 Design of Diplexer–Antenna Unit 375
10.6 PhotoHBT–Patch Antenna Integration 386
10.7 RF Transmit–Receive Module for the Radio on Fiber System 394
10.8 Summary and Concluding Remarks 404
References 407
11 Conclusions 410
Peter S. Hall and K. C. Gupta
11.1 Introduction 410
11.2 Overview of Analytical Methods 411
11.3 The Future 415
References 416
Index 419 |
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