Preface to the Third Edition |
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xi | |
Preface to the Second Edition |
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xii | |
Preface to the First Edition |
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xv | |
Acknowledgments |
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xvii | |
Chapter 1 Phased Arrays in Radar and Communication Systems |
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1 | (64) |
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1 | (11) |
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1.1.1 System Requirements for Radar and Communication Antennas |
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1 | (1) |
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1.1.2 Directive Properties of Arrays |
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1 | (3) |
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1.1.3 Array Noise Characterization |
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4 | (4) |
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1.1.4 The Receiving Antenna in a Polarized Plane Wave Field |
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8 | (2) |
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1.1.5 System Considerations |
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10 | (1) |
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1.1.6 Monopulse Beam Splitting |
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11 | (1) |
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1.2 Array Characterization for Radar and Communication Systems |
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12 | (33) |
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1.2.1 Scanning and Collimation of Linear and Planar Arrays |
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15 | (1) |
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1.2.2 Phase Scanning in One Dimension (00 = 0) |
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15 | (3) |
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1.2.3 Two-Dimensional Scanning of Planar Arrays |
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18 | (1) |
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1.2.4 Beamwidth and Directivity of Scanning Arrays |
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18 | (4) |
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1.2.5 Directivity of Linear Arrays |
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22 | (2) |
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1.2.6 Directivity of Planar Arrays |
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24 | (1) |
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1.2.7 Array Realized Gain and Scan Loss |
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25 | (1) |
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1.2.8 Grating Lobes of a Linear Array |
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26 | (4) |
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1.2.9 Grating Lobes of a Planar Array |
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30 | (1) |
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31 | (4) |
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1.2.11 Array Size Determination |
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35 | (1) |
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1.2.12 EIRP and G/T for Large, Two-Dimensional Passive or Active Arrays |
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35 | (2) |
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1.2.13 Gain Limitations Due to Circuit Losses |
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37 | (2) |
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1.2.14 Directivity and Illumination Errors: Random Error and Quantization Error |
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39 | (3) |
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1.2.15 Minimum Number of Elements versus Scan Coverage: Limited Field-of-View Arrays |
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42 | (2) |
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1.2.16 Time-Delay Compensation |
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44 | (1) |
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1.3 Array Architecture and Control Technology |
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45 | (16) |
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45 | (3) |
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48 | (5) |
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1.3.3 Beamforming and Relevant Architectures |
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53 | (3) |
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1.3.4 RF Components for Array Control |
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56 | (3) |
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1.3.5 Monolithic Microwave Integrated Circuit Technology |
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59 | (1) |
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1.3.6 Antenna Components for Mobile Phones |
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59 | (1) |
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1.3.7 Metamaterials for Array Control |
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60 | (1) |
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61 | (4) |
Chapter 2 Pattern Characteristics of Linear and Planar Arrays |
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65 | |
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65 | (11) |
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2.1.1 The Radiation Integrals |
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65 | (4) |
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2.1.2 Element Pattern Effects, Mutual Coupling, Gain Computed from Element Patterns |
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69 | (7) |
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2.2 Characteristics of Linear and Planar Arrays |
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76 | (15) |
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2.2.1 Linear Array Characteristics |
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76 | (9) |
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2.2.2 Planar Array Characteristics |
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85 | (6) |
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91 | (3) |
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94 | (16) |
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2.4.1 Average Patterns of Density-Tapered Arrays |
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96 | (1) |
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2.4.2 Probabilistic Studies of Thinned Arrays |
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97 | (5) |
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2.4.3 Thinned Arrays with Quantized Amplitude Distributions |
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102 | (8) |
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110 | |
Chapter 3 Pattern Synthesis for Linear and Planar Arrays 1 1 |
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3 | (194) |
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3.1 Linear Arrays and Planar Arrays with Separable Distributions |
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114 | (35) |
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3.1.1 Fourier Transform Method |
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114 | (1) |
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3.1.2 Schelkunov's (Schelkunoff's) Form |
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114 | (3) |
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117 | (3) |
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3.1.4 Dolph-Chebyshev Synthesis |
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120 | (6) |
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3.1.5 Taylor Line Source Synthesis |
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126 | (8) |
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3.1.6 Modified sin Piz/Piz Patterns |
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134 | (2) |
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3.1.7 Bayliss Line Source Difference Patterns |
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136 | (3) |
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3.1.8 Synthesis Methods Based on Taylor Patterns: Elliott's Modified Taylor Patterns and the Iterative Method of Elliott |
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139 | (6) |
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3.1.9 Discretization of Continuous Aperture Illuminations by Root Matching and Iteration |
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145 | (1) |
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3.1.10 Power Pattern Parameter Optimization Based upon the Ratio of Quadratic Forms |
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146 | (3) |
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3.2 Numerical Methods of Pattern Synthesis |
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149 | (15) |
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3.2.1 Numerical Power Pattern Synthesis |
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149 | (9) |
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3.2.2 The Alternating Projection Method |
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158 | (4) |
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3.2.3 Numerical Pattern Synthesis Subject to Constraints |
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162 | (2) |
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3.3 Circular Planar Arrays |
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164 | (4) |
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3.3.1 Taylor Circular Array Synthesis |
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164 | (2) |
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3.3.2 Bayliss Difference Patterns for Circular Arrays |
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166 | (2) |
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3.4 Methods of Pattern Optimization and Adaptive Arrays |
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168 | (16) |
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168 | (3) |
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3.4.2 Generalized S/N Optimization for Sidelobe Cancelers and Phased and Multiple-Beam Arrays |
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171 | (3) |
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3.4.3 Operation as Sidelobe Canceler |
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174 | (3) |
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3.4.4 Fully Adaptive Phased or Multiple-Beam Arrays |
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177 | (2) |
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3.4.5 Wideband Adaptive Control |
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179 | (5) |
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3.5 Generalized Patterns Using Covariance Matrix Inversion |
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184 | (2) |
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3.6 Pattern Synthesis Including Mutual Coupling |
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186 | (5) |
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186 | (1) |
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3.6.2 Pattern Synthesis Using Mutual Coupling Parameters |
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187 | (1) |
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3.6.3 Pattern Synthesis Using Measured Element Patterns |
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188 | (1) |
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3.6.4 Array Failure Correction |
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189 | (2) |
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191 | (6) |
Chapter 4 Patterns of Nonplanar Arrays |
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197 | (42) |
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197 | (2) |
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4.1.1 Methods of Analysis for General Conformal Arrays |
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198 | (1) |
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4.2 Patterns of Circular and Cylindrical Arrays |
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199 | (34) |
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4.2.1 Phase Mode Excitation of Circular Arrays |
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202 | (4) |
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4.2.2 Patterns and Elevation Scan |
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206 | (1) |
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4.2.3 Circular and Cylindrical Arrays of Directional Elements |
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207 | (3) |
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4.2.4 Sector Arrays on Conducting Cylinders |
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210 | (23) |
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4.3 Spherical and Hemispherical Arrays |
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233 | (1) |
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4.4 Truncated Conical Arrays |
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234 | (1) |
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234 | (5) |
Chapter 5 Elements for Phased Arrays |
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239 | |
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239 | (1) |
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5.2 Polarization Characteristics of Infinitesimal Elements in Free Space |
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239 | (3) |
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5.3 Electric Current (Wire) Antenna Elements |
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242 | (16) |
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5.3.1 Effective Radius of Wire Structures with Noncircular Cross-Section |
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242 | (1) |
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5.3.2 The Dipole and the Monopole |
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242 | (4) |
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5.3.3 Special Feeds for Dipoles and Monopoles |
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246 | (3) |
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5.3.4 Dipoles Fed Off-Center |
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249 | (2) |
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5.3.5 The Sleeve Dipole and Monopole |
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251 | (2) |
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5.3.6 The Bowtie and Other Wideband Dipoles |
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253 | (1) |
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254 | (2) |
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256 | (1) |
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5.3.9 Other Wire Antenna Structures |
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256 | (2) |
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5.4 Wideband Array Elements |
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258 | (15) |
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258 | (1) |
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5.4.2 Self-Complementary Elements |
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259 | (1) |
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260 | (1) |
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260 | (2) |
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5.4.5 Spiral Elements and Arrays |
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262 | (1) |
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5.4.6 Broadband Tapered Slot and Vivaldi Arrays |
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262 | (4) |
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5.4.7 Balanced Antipodal Vivaldi Antenna |
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266 | (1) |
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5.4.8 Broadband Dipole Elements |
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267 | (1) |
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268 | (1) |
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5.4.10 Capacitively Coupled Dipoles |
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268 | (5) |
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5.5 Aperture Antenna Elements |
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273 | (7) |
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273 | (2) |
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5.5.2 Waveguide Radiators |
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275 | (3) |
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5.5.3 Ridged Waveguide Elements |
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278 | (2) |
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280 | (1) |
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5.6 Microstrip Patch Elements |
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280 | (9) |
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280 | (8) |
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5.6.2 The Balanced Fed Radiator of Collings |
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288 | (1) |
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5.7 Elements for Alternative Transmission Lines |
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289 | (1) |
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5.8 Elements and Row (Column) Arrays for One-Dimensional Scan |
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289 | (7) |
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5.8.1 Waveguide Slot Array Line Source Elements |
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291 | (4) |
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5.8.2 Printed Circuit Series-Fed Arrays |
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295 | (1) |
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5.9 Elements and Polarizers for Polarization Diversity |
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296 | (6) |
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302 | |
Chapter 6 Summary of Element Pattern and Mutual Impedance Effects 31 |
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3 | (372) |
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6.1 Mutual Impedance Effects |
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313 | (2) |
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6.2 Integral Equation Formulation for Radiation and Coupling in Finite and Infinite Arrays |
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315 | (14) |
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6.2.1 Formulation and Results for Finite Arrays |
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315 | (4) |
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6.2.2 Formulation and Results for Infinite Arrays |
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319 | (10) |
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6.3 Array Blindness and Surface Waves |
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329 | (13) |
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6.4 Impedance and Element Patterns in Well-Behaved Infinite Scanning Arrays |
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342 | (11) |
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6.5 Semi-Infinite and Finite Arrays |
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353 | (1) |
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6.6 Impedance Matching for Wide Angle and Wideband Radiation |
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353 | (5) |
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6.6.1 Reduced Element Spacing |
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354 | (2) |
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6.6.2 Dielectric WAIM Sheets |
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356 | (2) |
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6.7 Mutual Coupling Phenomena for Nonplanar Surfaces |
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358 | (5) |
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6.8 Small Arrays and Waveguide Simulators for the Evaluation of Phased Array Scan Behavior |
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363 | (6) |
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6.8.1 Several Useful Simulators |
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367 | (2) |
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369 | (6) |
Chapter 7 Array Error Effects |
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375 | (26) |
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375 | (1) |
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7.2 Effects of Random Amplitude and Phase Errors in Periodic Arrays |
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375 | (9) |
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7.2.1 Average Pattern Characteristics |
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377 | (3) |
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380 | (1) |
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7.2.3 Beam Pointing Error |
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380 | (1) |
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381 | (3) |
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7.3 Sidelobe Levels Due to Periodic Phase, Amplitude, and Time-Delay Quantization |
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384 | (15) |
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7.3.1 Characteristics of an Array of Uniformly Illuminated Contiguous Subarrays |
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385 | (3) |
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7.3.2 Phase Quantization in a Uniformly Illuminated Array |
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388 | (5) |
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7.3.3 Reduction of Sidelobes Due to Phase Quantization |
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393 | (3) |
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7.3.4 Subarrays with Quantized Amplitude Taper |
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396 | (1) |
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7.3.5 Time Delay at the Subarray Ports |
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397 | (1) |
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7.3.6 Discrete Phase or Time-Delayed Subarrays with Quantized Subarray Amplitudes |
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398 | (1) |
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399 | (2) |
Chapter 8 Multiple Beam Antennas |
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401 | (34) |
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401 | (6) |
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8.1.1 Multiple Beam Systems |
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402 | (1) |
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8.1.2 Beam Crossover Loss |
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403 | (4) |
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8.2 Orthogonality Loss and the Stein Limit |
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407 | (14) |
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407 | (1) |
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8.2.2 Orthogonality of the psinc Functions and their Source Vectors |
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408 | (1) |
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8.2.3 Power Dividers for Multiple Beam Networks |
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409 | (2) |
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8.2.4 Efficiency of Multiple Beam Radiation-Stein's Limit |
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411 | (6) |
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8.2.5 Multiple-Beam Matrices and Optical Beamformers |
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417 | (4) |
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8.3 Multiple-Beam Lens and Reflector Systems |
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421 | (9) |
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8.3.1 Multiple Beam Lenses |
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423 | (2) |
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8.3.2 Reflectors for Scanning and Multiple Beams |
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425 | (1) |
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426 | (4) |
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430 | (5) |
Chapter 9 Special Arrays for Limited Field of View and Wideband Coverage |
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435 | (78) |
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9.1 Antenna Techniques for Limited Field of View and Wideband Systems |
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435 | (29) |
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9.1.1 Minimum Number of Controls |
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436 | (3) |
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9.1.2 Periodic and Aperiodic Arrays for Limited Field of View |
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439 | (16) |
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9.1.3 Aperiodic and Thinned Arrays |
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455 | (9) |
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9.2 Completely Overlapped Subarrays |
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464 | (33) |
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9.2.1 Constrained Network for Completely Overlapped Subarrays |
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464 | (8) |
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9.2.2 Reflectors and Lenses with Array Feeds |
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472 | (21) |
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9.2.3 Practical Design of a Dual-Transform System |
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493 | (4) |
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9.3 Wideband Scanning Systems |
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497 | (11) |
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9.3.1 Broadband Arrays with Time-Delayed Offset Beams |
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497 | (1) |
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9.3.2 Contiguous Time-Delayed Subarrays for Wideband Systems |
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498 | (3) |
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9.3.3 Overlapped Time-Delayed Subarrays for Wideband Systems |
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501 | (7) |
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508 | (5) |
About the Author |
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513 | (2) |
Index |
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515 | |