Optimization methods in electromagnetic radiation

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Hauptverfasser: Angell, Thomas S. (VerfasserIn), Kirsch, Andreas (VerfasserIn)
Format: Buch
Sprache:English
Veröffentlicht: New York [u.a.] Springer 2004
Schriftenreihe:Springer monographs in mathematics
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Datensatz im Suchindex

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adam_text THOMAS S. ANGELL ANDREAS KIRSCH OPTIMIZATION METHODS IN ELECTROMAGNETIC RADIATION WITH 78 ILLUSTRATIONS SPRINGER CONTENTS PREFACE IX 1 ARRAYS OF POINT AND LINE SOURCES, AND OPTIMIZATION 1 1.1 THE PROBLEM OF ANTENNA OPTIMIZATION 1 1.2 ARRAYS OF POINT SOURCES 2 1.2.1 THE LINEAR ARRAY 3 1.2.2 CIRCULAR ARRAYS 10 1.3 MAXIMIZATION OF DIRECTIVITY AND SUPER-GAIN 15 1.3.1 DIRECTIVITY AND OTHER MEASURES OF PERFORMANCE 15 1.3.2 MAXIMIZATION OF DIRECTIVITY 19 1.4 DOLPH-TSCHEBYSHEFF ARRAYS 21 1.4.1 TSCHEBYSHEFF POLYNOMIALS 22 1.4.2 THE DOLPH PROBLEM 24 1.5 LINE SOURCES 26 1.5.1 THE LINEAR LINE SOURCE 30 1.5.2 THE CIRCULAR LINE SOURCE 36 1.5.3 NUMERICAL QUADRATURE 43 1.6 CONCLUSION 47 2 DISCUSSION OF MAXWELL S EQUATIONS 49 2.1 INTRODUCTION 49 2.2 GEOMETRY OF THE RADIATING STRUCTURE 49 2.3 MAXWELL S EQUATIONS IN INTEGRAL FORM 50 2.4 THE CONSTITUTIVE RELATIONS . . . 51 2.5 MAXWELL S EQUATIONS IN DIFFERENTIAL FORM 52 2.6 ENERGY FLOW AND THE POYNTING VECTOR 55 2.7 TIME HARMONIC FIELDS 56 2.8 VECTOR POTENTIALS 58 2.9 RADIATION CONDITION, FAR FIELD PATTERN 60 2.10 RADIATING DIPOLES AND LINE SOURCES 63 2.11 BOUNDARY CONDITIONS ON INTERFACES 68 VI CONTENTS 2.12 HERTZ POTENTIALS AND CLASSES OF SOLUTIONS 70 2.13 RADIATION PROBLEMS IN TWO DIMENSIONS 73 3 OPTIMIZATION THEORY FOR ANTENNAS 77 3.1 INTRODUCTORY REMARKS 77 3.2 THE GENERAL OPTIMIZATION PROBLEM 80 3.2.1 EXISTENCE AND UNIQUENESS 81 3.2.2 THE MODELING OF CONSTRAINTS 84 3.2.3 EXTREME POINTS AND OPTIMAL SOLUTIONS 88 3.2.4 THE LAGRANGE MULTIPLIER RULE 93 3.2.5 METHODS OF FINITE DIMENSIONAL APPROXIMATION 96 3.3 FAR FIELD PATTERNS AND FAR FIELD OPERATORS 101 3.4 MEASURES OF ANTENNA PERFORMANCE 103 4 THE SYNTHESIS PROBLEM 113 4.1 INTRODUCTORY REMARKS 113 4.2 REMARKS ON ILL-POSED PROBLEMS 115 4.3 REGULARIZATION BY CONSTRAINTS 121 4.4 THE TIKHONOV REGULARIZATION 127 4.5 THE SYNTHESIS PROBLEM FOR THE FINITE LINEAR LINE SOURCE 133 4.5.1 BASIC EQUATIONS 134 4.5.2 THE NYSTROM METHOD 135 4.5.3 NUMERICAL SOLUTION OF THE NORMAL EQUATIONS 137 4.5.4 APPLICATIONS OF THE REGULARIZATION TECHNIQUES 138 5 BOUNDARY VALUE PROBLEMS FOR THE TWO-DIMENSIONAL HELMHOLTZ EQUATION 145 5.1 INTRODUCTION AND FORMULATION OF THE PROBLEMS 145 5.2 RELLICH S LEMMA AND UNIQUENESS 148 5.3 EXISTENCE BY THE BOUNDARY INTEGRAL EQUATION METHOD 151 5.4 L 2 -BOUNDARY DATA 157 5.5 NUMERICAL METHODS 163 5.5.1 NYSTROM S METHOD FOR PERIODIC WEAKLY SINGULAR KERNELS 164 5.5.2 COMPLETE FAMILIES OF SOLUTIONS 168 5.5.3 FINITE ELEMENT METHODS FOR ABSORBING BOUNDARY CONDITIONS 174 5.5.4 HYBRID METHODS 181 6 BOUNDARY VALUE PROBLEMS FOR MAXWELL S EQUATIONS 185 6.1 INTRODUCTION AND FORMULATION OF THE PROBLEM 185 6.2 UNIQUENESS AND EXISTENCE 188 6.3 L 2 -BOUNDARY DATA 193 CONTENTS VII SOME PARTICULAR OPTIMIZATION PROBLEMS 195 7.1 GENERAL ASSUMPTIONS 195 7.2 MAXIMIZATION OF POWER 197 7.2.1 INPUT POWER CONSTRAINTS 198 7.2.2 POINTWISE CONSTRAINTS ON INPUTS 202 7.2.3 NUMERICAL SIMULATIONS 204 7.3 THE NULL-PLACEMENT PROBLEM 211 7.3.1 MAXIMIZATION OF POWER WITH PRESCRIBED NULLS 213 7.3.2 A PARTICULAR EXAMPLE - THE LINE SOURCE 216 7.3.3 POINTWISE CONSTRAINTS 219 7.3.4 MINIMIZATION OF PATTERN PERTURBATION 221 7.4 THE OPTIMIZATION OF SIGNAL-TO-NOISE RATIO AND DIRECTIVITY .... 226 7.4.1 THE EXISTENCE OF OPTIMAL SOLUTIONS 227 7.4.2 NECESSARY CONDITIONS 228 7.4.3 THE FINITE DIMENSIONAL PROBLEMS 231 CONFLICTING OBJECTIVES: THE VECTOR OPTIMIZATION PROBLEM . 239 8.1 INTRODUCTION 239 8.2 GENERAL MULTI-CRITERIA OPTIMIZATION PROBLEMS 240 8.2.1 MINIMAL ELEMENTS AND PARETO POINTS 241 8.2.2 THE LAGRANGE MULTIPLIER RULE 247 8.2.3 SCALARIZATION 249 8.3 THE MULTI-CRITERIA DOLPH PROBLEM FOR ARRAYS 250 8.3.1 THE WEAK DOLPH PROBLEM 251 8.3.2 TWO MULTI-CRITERIA VERSIONS 253 8.4 NULL PLACEMENT PROBLEMS AND SUPER-GAIN 262 8.4.1 MINIMAL PATTERN DEVIATION 264 8.4.2 POWER AND SUPER-GAIN 270 8.5 THE SIGNAL-TO-NOISE RATIO PROBLEM 278 8.5.1 FORMULATION OF THE PROBLEM AND EXISTENCE OF PARETO POINTS 278 8.5.2 THE LAGRANGE MULTIPLIER RULE 280 8.5.3 AN EXAMPLE 282 APPENDIX 285 A.I INTRODUCTION 285 A.2 BASIC NOTIONS AND EXAMPLES 286 A.3 THE LEBESGUE INTEGRAL AND FUNCTION SPACES 292 A.3.1 THE LEBESGUE INTEGRAL 292 A.3.2 SOBOLEV SPACES 295 A.4 ORTHONORMAL SYSTEMS 298 A.5 LINEAR BOUNDED AND COMPACT OPERATORS 300 A.6 THE HAHN-BANACH THEOREM 307 A.7 THE FRECHET DERIVATIVE 310 A.8 WEAK CONVERGENCE 312 VIII CONTENTS A.9 PARTIAL ORDERINGS 315 REFERENCES 319 INDEX 327
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spellingShingle Angell, Thomas S.
Kirsch, Andreas
Optimization methods in electromagnetic radiation
Antennas (Electronics) Design and construction
Mathematical optimization
Maxwell equations Numerical solutions
Elektromagnetisches Feld (DE-588)4014305-3 gnd
Optimierung (DE-588)4043664-0 gnd
Antenne (DE-588)4002210-9 gnd
subject_GND (DE-588)4014305-3
(DE-588)4043664-0
(DE-588)4002210-9
title Optimization methods in electromagnetic radiation
title_auth Optimization methods in electromagnetic radiation
title_exact_search Optimization methods in electromagnetic radiation
title_full Optimization methods in electromagnetic radiation Thomas S. Angell ; Andreas Kirsch
title_fullStr Optimization methods in electromagnetic radiation Thomas S. Angell ; Andreas Kirsch
title_full_unstemmed Optimization methods in electromagnetic radiation Thomas S. Angell ; Andreas Kirsch
title_short Optimization methods in electromagnetic radiation
title_sort optimization methods in electromagnetic radiation
topic Antennas (Electronics) Design and construction
Mathematical optimization
Maxwell equations Numerical solutions
Elektromagnetisches Feld (DE-588)4014305-3 gnd
Optimierung (DE-588)4043664-0 gnd
Antenne (DE-588)4002210-9 gnd
topic_facet Antennas (Electronics) Design and construction
Mathematical optimization
Maxwell equations Numerical solutions
Elektromagnetisches Feld
Optimierung
Antenne
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