Adaptive antennas and phased arrays for radar and communications:
Gespeichert in:
1. Verfasser: | |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Boston [u.a.]
Artech House
2008
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Schriftenreihe: | Artech House radar series
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Includes bibliographical references and index |
Beschreibung: | XVI, 394 S. Ill., graph. Darst. 24 cm |
ISBN: | 9781596932739 1596932732 |
Internformat
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264 | 1 | |a Boston [u.a.] |b Artech House |c 2008 | |
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650 | 4 | |a Telecommunication | |
650 | 4 | |a Radar | |
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adam_text | ADAPTIVE ANTENNAS AND PHASED ARRAYS FOR RADAR AND COMMUNICATIONS ALAN J.
FENN MASSACHUSETTS INSTITUTE OF TECHNOLOGY LINCOLN LABORATORY ARTECH
HOUSE BOSTON|LONDON ARTECHHOUSE.COM CONTENTS PREFACE XY 1 ADAPTIVE
ANTENNAS AND DEGREES OF FREEDOM 1.1 INTRODUCTION 1 1.2 ADAPTIVE
ANTENNA FUNDAMENTALS 3 1.3 CONSUMPTION OF ADAPTIVE ANTENNA DEGREES OF
FREEDOM 8 1.4 DERIVATION OF THE APPLEBAUM-HOWELLS STEADY-STATE ADAPTED
WEIGHT EQUATION IN EIGENSPACE 9 1.5 CONDITIONS FOR COMPLETE CONSUMPTION
OF IV-DEGREES OF FREEDOM 18 1.6 ORTHOGONAL INTERFERENCE SOURCES 19 1.6.1
DERIVATION OF AN INTERFERENCE SIGNAL MATRIX TO CONSUME N DEGREES OF
FREEDOM OF AN AT-CHANNEL ADAPTIVE NULLING ARRAY ANTENNA 19 1.7
EIGENVALUES AND INR FOR TWO-ELEMENT ARRAY WITH TWO INTERFERENCE SOURCES
22 1.8 FIGURE OF MERIT FOR CONSUMPTION OF DEGREES OF FR6EDOM 28 1.9
GRADIENT SEARCH TO MAXIMIZE CONSUMPTION OF ADAPTIVE ANTENNA DEGREES OF
FREEDOM 32 1.10 MAXIMUM JAMMER EFFECTIVENESS, NUMERICAL RESULTS 35
1.10.1 SEVEN-ELEMENT HEXAGONAL ARRAY 36 1.10.2 SEVEN-ELEMENT RING ARRAY
38 VII VIII ADAPTIVE ANTENNAS AND PHASED ARRAYS FOR RADAR AND
COMMUNICATIONS 1.11 1.12 2 2.1 2.2 2.3 2.3.1 2.3.2 2.3.3 2.4 2.4.1 2.4.2
2.4.3 2.5 2.6 3 SUMMARY PROBLEM SET REFERENCES ARRAY MUTUAL COUPLING
EFFECTS ON ADAPTIVE RADAR CLUTTER SUPPRESSION INTRODUCTION DISPLACED
PHASE CENTER ANTENNA CONCEPT FOR CLUTTER SUPPRESSION THEORY ARRAY
ANALYSIS INCLUDING MUTUAL COUPLING EFFECTS CALCULATION OF DISPLACED
PHASE CENTER ANTENNA CLUTTER CANCELLATION DERIVATION OF CLUTTER
CANCELLATION FACTOR RESULTS INTRODUCTION SUBSCALE 96-ELEMENT PLANAR
PHASED ARRAY SUBSCALE AND FULL-SCALE PLANAR PHASED ARRAYS SUMMARY
PROBLEM SET * REFERENCES FOCUSED NEAR-FIELD TECHNIQUE FOR EVALUATING
ADAPTIVE PHASED ARRAYS 39 40 41 43 43 43 49 49 53 56 59 59 60 65 71 72
73 75 3.1 INTRODUCTION 75 3.2 THEORY 79 3.2.1 ADAPTIVE NULLING
FORMULATION ^ 79 3.3 NEAR-FIELD FORMULATION 82 3.3.1 FOCUSED
NEAR-FIELD NULLING CONCEPT 82 3.3.2 COVARIANCE MATRIX FOR NEAR-FIELD
INTERFERENCE 83 3.3.3 ARRAY RADIATION PATTERN IN THE FOCUSED NEAR FIELD
84 3.3.4 FAR-FIELD FORMULATION 87 3.3.5 ARRAY RADIATION PATTERN 88 3.3.6
NEAR-FIELD BOUNDARY 88 CONTENTS IX 3.4 RESULTS 89 3.4.1 FOCUSED LINEAR
ARRAY QUIESCENT CONDITIONS 89 3.4.2 FULLY ADAPTIVE ARRAY BEHAVIOR 90 3.5
SUMMARY 108 3.6 PROBLEM SET 108 REFERENCES 109 4 MOMENT METHOD ANALYSIS
OF FOCUSED NEAR-FIELD ADAPTIVE NULLING VH 4.1 INTRODUCTION 111 4.2
THEORY 113 4.2.1 FOCUSED NEAR-FIELD NULLING CONCEPT 113 4.2.2 ADAPTIVE
ARRAY CONCEPTS 114 4.2.3 MOMENT METHOD FORMULATION 117 4.3 RESULTS 120
4.3.1 FOCUSED ARRAY QUIESCENT CONDITIONS 120 4.4 SIDELOBE CANCELLER
ADAPTIVE ARRAY BEHAVIOR 123 4.4.1 NONSTRESSING INTERFERENCE: ONE SOURCE
123 4.4.2 STRESSING INTERFERENCE: TWO SOURCES 125 4.5 SUMMARY 129
REFERENCES 130 5 FOCUSED NEAR-FIELD TESTING OF MULTIPHASE-CENTER
ADAPTIVE ARRAY RADAR SYSTEMS 133 5.1 INTRODUCTION 133 5.2
NEAR-FIELD/FAR-FIELD SOURCE WAVEFRONT DISPERSION 138 5.3 FOCUSED
NEAR-FIELD TESTING CONCEPT 139 5.4 ADAPTIVE DPCA RADAR CONCEPT F 141 5.5
ADAPTIVE DPCA ARRAY FORMALISM 143 5.6 ARRAY ANTENNA/SOURCE MODELING 147
5.7 DPCA NEAR-FIELD SOURCE DISTRIBUTION 149 5.8 NEAR-FIELD/FAR-FIELD
SIMULATIONS 150 ADAPTIVE ANTENNAS AND PHASED ARRAYS FOR RADAR AND
COMMUNICATIONS 5.9 5.10 6 6.1 6.2 6.2.1 6.2.2 6.2.3 6.3 6.4 6.4.1 6.4.2
6.5 7 7.1 7.2 7.3 7.4 8 SUMMARY PROBLEM SET REFERENCES EXPERIMENTAL
TESTING OF FOCUSED NEAR-FIELD ADAPTIVE NULLING INTRODUCTION ADAPTIVE
NULLING SYSTEM DESCRIPTION INTRODUCTION ADAPTIVE NULLING RECEIVER
RECEIVER CHANNEL EQUALIZATION PROTOTYPE PHASED ARRAY AND SIMULATION
MODEL RESULTS EQUALIZATION PERFORMANCE FOCUSED NEAR-FIELD NULLING
PERFORMANCE SUMMARY REFERENCES EXPERIMENTAL TESTING OF HIGH-RESOLUTION
NULLING WITH A MULTIPLE BEAM ANTENNA INTRODUCTION MBA DESIGN AND
CONSTRUCTION MEASURED RESULTS SUMMARY REFERENCES . V PHASED ARRAY
ANTENNAS: AN INTRODUCTION 157 158 159 161 161 162 162 163 166 169 171
171 171 174 174 177 177 178 184 188 189 191 8.1 INTRODUCTION 191 8.2
THEORETICAL BACKGROUND 192 8.3 EXAMPLE MEASUREMENTS OF ARRAY MUTUAL
COUPLING AND ARRAY ELEMENT GAIN PATTERN 208 8.4 SUMMARY 211 CONTENTS XI
9 9.1 9.2 9.3 9.3.1 9.3.2 9.3.3 9.4 9.4.1 9.4.2 9.4.3 9.4.4 9.4.5 9.5
9.5.1 9.5.2 9.5.3 9.6 9.7 10 10.1 10.2 10.3 10.4 10.5 REFERENCES
MONOPOLE PHASED ARRAY ANTENNA DESIGN, ANALYSIS, AND MEASUREMENTS
INTRODUCTION MONOPOLE PHASED ARRAYS THEORY FOR ANALYSIS OF FINITE ARRAYS
OF MONOPOLES INTRODUCTION MATRIX EQUATIONS FOR THE ARRAY ELEMENT
CURRENTS ARRAY INPUT IMPEDANCE, PATTERNS, AND GAIN THEORY FOR ANALYSIS
OF INFINITE ARRAYS OF MONOPOLES INTRODUCTION DERIVATION OF THE NEAR-ZONE
RADIATED ELECTRIC FIELD DERIVATION OF THE INDUCED VOLTAGE AT THE
REFERENCE ELEMENT SCAN INPUT IMPEDANCE THE ELEMENT-GAIN PATTERN FOR AN
INFINITE ARRAY RESULTS THE EFFECTS OF ARRAY SIZE FOR IDEAL ONE-QUARTER
WAVELENGTH MONOPOLES 121-ELEMENT SQUARE GRID MONOPOLE ARRAY: EXPERIMENT
AND THEORY HEXAGONAL LATTICE INFINITE ARRAY RESULTS SUMMARY PROBLEM
SET REFERENCES MONOPOLE PHASED ARRAY FIELD CHARACTERISTICS IN THE
FOCUSED NEAR-FIELD REGION INTRODUCTION MONOPOLE PHASED ARRAY ANTENNA
DESIGN THEORETICAL FORMULATION FOR THE ELECTRIC FIELD COMPONENTS RESULTS
SUMMARY REFERENCES 212 215 215 217 219 219 220 224 229 229 230 238 241
241 242 242 247 252 255 256 257 259 259 260 261 264 272 272 11.4 11.5
RESULTS SUMMARY REFERENCES XII ADAPTIVE ANTENNAS AND PHASED ARRAYS FOR
RADAR AND COMMUNICATIONS 11 DISPLACED PHASE CENTER ANTENNA MEASUREMENTS
USING NEAR-FIELD SCANNING 275 11.1 INTRODUCTION 275 11.2 DISPLACED PHASE
CENTER ANTENNA CLUTTER CANCELLATION 276 11.3 DISPLACED PHASE CENTER
ANTENNA CLUTTER NEAR-FIELD MEASUREMENT TECHNIQUE 278 11.3.1 DPCA TEST
ARRAY DESCRIPTION 279 11.3.2 NEAR-FIELD SCANNER 281 283 289 289 12
LOW-SIDELOBE PHASED ARRAY ANTENNA MEASUREMENTS USING NEAR-FIELD SCANNING
291 12.1 INTRODUCTION 291 12.2 THEORY 293 12.2.1 PLANAR NEAR-FIELD
SCANNING FORMULATION 293 12.2.2 MONOPOLE PHASED ARRAY NEAR-FIELD
MODELING USING THE METHOD OF MOMENTS 298 12.3 LOW-SIDELOBE PHASED ARRAY
ANTENNA PROTOTYPE 305 12.4 NEAR-FIELD MEASUREMENTS SYSTEM 307 12.5
RESULTS 309 12.5.1 SELECTION OF THEORETICAL PROBE MODEL 309 12.6 SUMMARY
317 12.7 PROBLEM SET 319 REFERENCES 319 13 ARRAYS OF HORIZONTALLY
POLARIZED OMNIDIRECTIONAL ELEMENTS 321 13.1 INTRODUCTION 321 13.2 THEORY
322 13.2.1 ARRAY GAIN AND ELEMENT GAIN 322 13.3 LOOP-FED SLOTTED
CYLINDER ANTENNA 322 CONTENTS XIII 13.4 RESULTS 323 13.4.1 SINGLE
ELEMENT 323 13.4.2 SEVEN-ELEMENT HEXAGONAL ARRAY 327 13.4.3 LINEAR
ARRAYS 330 13.5 SUMMARY 332 REFERENCES 332 14 FINITE ARRAYS OF CROSSED
V-DIPOLE ELEMENTS 335 14.1 INTRODUCTION 335 14.2 THEORY 335 14.3 DIPOLE
ELEMENT PROTOTYPES DESCRIPTION 340 14.4 MEASUREMENTS OF SINGLE STRAIGHT
DIPOLE AND V-DIPOLE ELEMENTS ABOVE A GROUND PLANE 341 14.5 V-DIPOLE
ARRAY DESCRIPTION 343 14.6 MEASURED ARRAY MUTUAL COUPLING RESULTS 343
14.7 CENTER ELEMENT GAIN PATTERN MEASUREMENTS AND SIMULATIONS 346 14.8
SUMMARY 348 REFERENCES , 349 15 EXPERIMENTAL ULTRAWIDEBAND DIPOLE
ANTENNA ARRAY 351 15.1 INTRODUCTION 351 15.2 ULTRAWIDEBAND DIPOLE ARRAY
DESIGN 351 15.3 MEASURED RESULTS FOR PROTOTYPE ULTRAWIDEBAND ARRAY 356
15.4 SUMMARY 357 REFERENCES - F_ 358 16 FINITE RECTANGULAR WAVEGUIDE
PHASED ARRAYS 359 16.1 INTRODUCTION 359 16.2 ARRAY FORMULATION 361 16.3
RESULTS 374 16.4 SUMMARY 379 XIV ADAPTIVE ANTENNAS AND PHASED ARRAYS FOR
RADAR AND COMMUNICATIONS 16.5 PROBLEM SET REFERENCES ABOUT THE AUTHOR
INDEX 383 383 387 389
|
adam_txt |
ADAPTIVE ANTENNAS AND PHASED ARRAYS FOR RADAR AND COMMUNICATIONS ALAN J.
FENN MASSACHUSETTS INSTITUTE OF TECHNOLOGY LINCOLN LABORATORY ARTECH
HOUSE BOSTON|LONDON ARTECHHOUSE.COM CONTENTS PREFACE XY 1 ADAPTIVE
ANTENNAS AND DEGREES OF FREEDOM \ 1.1 INTRODUCTION 1 1.2 ADAPTIVE
ANTENNA FUNDAMENTALS 3 1.3 CONSUMPTION OF ADAPTIVE ANTENNA DEGREES OF
FREEDOM 8 1.4 DERIVATION OF THE APPLEBAUM-HOWELLS STEADY-STATE ADAPTED
WEIGHT EQUATION IN EIGENSPACE 9 1.5 CONDITIONS FOR COMPLETE CONSUMPTION
OF IV-DEGREES OF FREEDOM 18 1.6 ORTHOGONAL INTERFERENCE SOURCES 19 1.6.1
DERIVATION OF AN INTERFERENCE SIGNAL MATRIX TO CONSUME N DEGREES OF
FREEDOM OF AN AT-CHANNEL ADAPTIVE NULLING ARRAY ANTENNA 19 1.7
EIGENVALUES AND INR FOR TWO-ELEMENT ARRAY WITH TWO INTERFERENCE SOURCES
22 1.8 FIGURE OF MERIT FOR CONSUMPTION OF DEGREES OF FR6EDOM 28 1.9
GRADIENT SEARCH TO MAXIMIZE CONSUMPTION OF ADAPTIVE ANTENNA DEGREES OF
FREEDOM 32 1.10 MAXIMUM JAMMER EFFECTIVENESS, NUMERICAL RESULTS 35
1.10.1 SEVEN-ELEMENT HEXAGONAL ARRAY 36 1.10.2 SEVEN-ELEMENT RING ARRAY
38 VII VIII ADAPTIVE ANTENNAS AND PHASED ARRAYS FOR RADAR AND
COMMUNICATIONS 1.11 1.12 2 2.1 2.2 2.3 2.3.1 2.3.2 2.3.3 2.4 2.4.1 2.4.2
2.4.3 2.5 2.6 3 SUMMARY PROBLEM SET REFERENCES ARRAY MUTUAL COUPLING
EFFECTS ON ADAPTIVE RADAR CLUTTER SUPPRESSION INTRODUCTION DISPLACED
PHASE CENTER ANTENNA CONCEPT FOR CLUTTER SUPPRESSION THEORY ARRAY
ANALYSIS INCLUDING MUTUAL COUPLING EFFECTS CALCULATION OF DISPLACED
PHASE CENTER ANTENNA CLUTTER CANCELLATION DERIVATION OF CLUTTER
CANCELLATION FACTOR RESULTS INTRODUCTION SUBSCALE 96-ELEMENT PLANAR
PHASED ARRAY SUBSCALE AND FULL-SCALE PLANAR PHASED ARRAYS SUMMARY
PROBLEM SET " * REFERENCES FOCUSED NEAR-FIELD TECHNIQUE FOR EVALUATING
ADAPTIVE PHASED ARRAYS 39 40 41 43 43 43 49 49 53 56 59 59 60 65 71 72
73 75 3.1 INTRODUCTION 75 3.2 THEORY 79 3.2.1 ADAPTIVE NULLING
FORMULATION ^ 79 3.3 NEAR-FIELD FORMULATION ' 82 3.3.1 FOCUSED
NEAR-FIELD NULLING CONCEPT 82 3.3.2 COVARIANCE MATRIX FOR NEAR-FIELD
INTERFERENCE 83 3.3.3 ARRAY RADIATION PATTERN IN THE FOCUSED NEAR FIELD
84 3.3.4 FAR-FIELD FORMULATION 87 3.3.5 ARRAY RADIATION PATTERN 88 3.3.6
NEAR-FIELD BOUNDARY 88 CONTENTS IX 3.4 RESULTS 89 3.4.1 FOCUSED LINEAR
ARRAY QUIESCENT CONDITIONS 89 3.4.2 FULLY ADAPTIVE ARRAY BEHAVIOR 90 3.5
SUMMARY 108 3.6 PROBLEM SET 108 REFERENCES 109 4 MOMENT METHOD ANALYSIS
OF FOCUSED NEAR-FIELD ADAPTIVE NULLING VH 4.1 INTRODUCTION 111 4.2
THEORY 113 4.2.1 FOCUSED NEAR-FIELD NULLING CONCEPT 113 4.2.2 ADAPTIVE
ARRAY CONCEPTS 114 4.2.3 MOMENT METHOD FORMULATION 117 4.3 RESULTS 120
4.3.1 FOCUSED ARRAY QUIESCENT CONDITIONS 120 4.4 SIDELOBE CANCELLER
ADAPTIVE ARRAY BEHAVIOR 123 4.4.1 NONSTRESSING INTERFERENCE: ONE SOURCE
123 4.4.2 STRESSING INTERFERENCE: TWO SOURCES 125 4.5 SUMMARY 129
REFERENCES 130 5 FOCUSED NEAR-FIELD TESTING OF MULTIPHASE-CENTER
ADAPTIVE ARRAY RADAR SYSTEMS 133 5.1 INTRODUCTION 133 5.2
NEAR-FIELD/FAR-FIELD SOURCE WAVEFRONT DISPERSION 138 5.3 FOCUSED
NEAR-FIELD TESTING CONCEPT 139 5.4 ADAPTIVE DPCA RADAR CONCEPT F 141 5.5
ADAPTIVE DPCA ARRAY FORMALISM 143 5.6 ARRAY ANTENNA/SOURCE MODELING 147
5.7 DPCA NEAR-FIELD SOURCE DISTRIBUTION 149 5.8 NEAR-FIELD/FAR-FIELD
SIMULATIONS 150 ADAPTIVE ANTENNAS AND PHASED ARRAYS FOR RADAR AND
COMMUNICATIONS 5.9 5.10 6 6.1 6.2 6.2.1 6.2.2 6.2.3 6.3 6.4 6.4.1 6.4.2
6.5 7 7.1 7.2 7.3 7.4 8 SUMMARY PROBLEM SET REFERENCES EXPERIMENTAL
TESTING OF FOCUSED NEAR-FIELD ADAPTIVE NULLING INTRODUCTION ADAPTIVE
NULLING SYSTEM DESCRIPTION INTRODUCTION ADAPTIVE NULLING RECEIVER
RECEIVER CHANNEL EQUALIZATION PROTOTYPE PHASED ARRAY AND SIMULATION
MODEL RESULTS EQUALIZATION PERFORMANCE FOCUSED NEAR-FIELD NULLING
PERFORMANCE SUMMARY REFERENCES EXPERIMENTAL TESTING OF HIGH-RESOLUTION
NULLING WITH A MULTIPLE BEAM ANTENNA INTRODUCTION MBA DESIGN AND
CONSTRUCTION MEASURED RESULTS SUMMARY REFERENCES . V PHASED ARRAY
ANTENNAS: AN INTRODUCTION 157 158 159 161 161 162 162 163 166 169 171
171 171 174 174 177 177 178 184 188 189 191 8.1 INTRODUCTION 191 8.2
THEORETICAL BACKGROUND 192 8.3 EXAMPLE MEASUREMENTS OF ARRAY MUTUAL
COUPLING AND ARRAY ELEMENT GAIN PATTERN 208 8.4 SUMMARY 211 CONTENTS XI
9 9.1 9.2 9.3 9.3.1 9.3.2 9.3.3 9.4 9.4.1 9.4.2 9.4.3 9.4.4 9.4.5 9.5
9.5.1 9.5.2 9.5.3 9.6 9.7 10 10.1 10.2 10.3 10.4 10.5 REFERENCES
MONOPOLE PHASED ARRAY ANTENNA DESIGN, ANALYSIS, AND MEASUREMENTS
INTRODUCTION MONOPOLE PHASED ARRAYS THEORY FOR ANALYSIS OF FINITE ARRAYS
OF MONOPOLES INTRODUCTION MATRIX EQUATIONS FOR THE ARRAY ELEMENT
CURRENTS ARRAY INPUT IMPEDANCE, PATTERNS, AND GAIN THEORY FOR ANALYSIS
OF INFINITE ARRAYS OF MONOPOLES INTRODUCTION DERIVATION OF THE NEAR-ZONE
RADIATED ELECTRIC FIELD DERIVATION OF THE INDUCED VOLTAGE AT THE
REFERENCE ELEMENT SCAN INPUT IMPEDANCE THE ELEMENT-GAIN PATTERN FOR AN
INFINITE ARRAY RESULTS THE EFFECTS OF ARRAY SIZE FOR IDEAL ONE-QUARTER
WAVELENGTH MONOPOLES 121-ELEMENT SQUARE GRID MONOPOLE ARRAY: EXPERIMENT
AND THEORY HEXAGONAL LATTICE INFINITE ARRAY RESULTS SUMMARY ' PROBLEM
SET REFERENCES MONOPOLE PHASED ARRAY FIELD CHARACTERISTICS IN THE
FOCUSED NEAR-FIELD REGION INTRODUCTION MONOPOLE PHASED ARRAY ANTENNA
DESIGN THEORETICAL FORMULATION FOR THE ELECTRIC FIELD COMPONENTS RESULTS
SUMMARY REFERENCES 212 215 215 217 219 219 220 224 229 229 230 238 241
241 242 242 247 252 255 256 257 259 259 260 261 264 272 272 11.4 11.5
RESULTS SUMMARY REFERENCES XII ADAPTIVE ANTENNAS AND PHASED ARRAYS FOR
RADAR AND COMMUNICATIONS 11 DISPLACED PHASE CENTER ANTENNA MEASUREMENTS
USING NEAR-FIELD SCANNING 275 11.1 INTRODUCTION 275 11.2 DISPLACED PHASE
CENTER ANTENNA CLUTTER CANCELLATION 276 11.3 DISPLACED PHASE CENTER
ANTENNA CLUTTER NEAR-FIELD MEASUREMENT TECHNIQUE 278 11.3.1 DPCA TEST
ARRAY DESCRIPTION 279 11.3.2 NEAR-FIELD SCANNER 281 283 289 289 12
LOW-SIDELOBE PHASED ARRAY ANTENNA MEASUREMENTS USING NEAR-FIELD SCANNING
291 12.1 INTRODUCTION 291 12.2 THEORY 293 12.2.1 PLANAR NEAR-FIELD
SCANNING FORMULATION 293 12.2.2 MONOPOLE PHASED ARRAY NEAR-FIELD
MODELING USING THE METHOD OF MOMENTS 298 12.3 LOW-SIDELOBE PHASED ARRAY
ANTENNA PROTOTYPE 305 12.4 NEAR-FIELD MEASUREMENTS SYSTEM 307 12.5
RESULTS 309 12.5.1 SELECTION OF THEORETICAL PROBE MODEL 309 12.6 SUMMARY
317 12.7 PROBLEM SET 319 REFERENCES 319 13 ARRAYS OF HORIZONTALLY
POLARIZED OMNIDIRECTIONAL ELEMENTS 321 13.1 INTRODUCTION 321 13.2 THEORY
322 13.2.1 ARRAY GAIN AND ELEMENT GAIN 322 13.3 LOOP-FED SLOTTED
CYLINDER ANTENNA 322 CONTENTS XIII 13.4 RESULTS 323 13.4.1 SINGLE
ELEMENT 323 13.4.2 SEVEN-ELEMENT HEXAGONAL ARRAY 327 13.4.3 LINEAR
ARRAYS 330 13.5 SUMMARY 332 REFERENCES 332 14 FINITE ARRAYS OF CROSSED
V-DIPOLE ELEMENTS 335 14.1 INTRODUCTION 335 14.2 THEORY 335 14.3 DIPOLE
ELEMENT PROTOTYPES DESCRIPTION 340 14.4 MEASUREMENTS OF SINGLE STRAIGHT
DIPOLE AND V-DIPOLE ELEMENTS ABOVE A GROUND PLANE 341 14.5 V-DIPOLE
ARRAY DESCRIPTION 343 14.6 MEASURED ARRAY MUTUAL COUPLING RESULTS 343
14.7 CENTER ELEMENT GAIN PATTERN MEASUREMENTS AND SIMULATIONS 346 14.8
SUMMARY 348 REFERENCES , 349 15 EXPERIMENTAL ULTRAWIDEBAND DIPOLE
ANTENNA ARRAY 351 15.1 INTRODUCTION 351 15.2 ULTRAWIDEBAND DIPOLE ARRAY
DESIGN 351 15.3 MEASURED RESULTS FOR PROTOTYPE ULTRAWIDEBAND ARRAY 356
15.4 SUMMARY " 357 REFERENCES - F_ 358 16 FINITE RECTANGULAR WAVEGUIDE
PHASED ARRAYS 359 16.1 INTRODUCTION 359 16.2 ARRAY FORMULATION 361 16.3
RESULTS 374 16.4 SUMMARY 379 XIV ADAPTIVE ANTENNAS AND PHASED ARRAYS FOR
RADAR AND COMMUNICATIONS 16.5 PROBLEM SET REFERENCES ABOUT THE AUTHOR
INDEX 383 383 387 389 |
any_adam_object | 1 |
any_adam_object_boolean | 1 |
author | Fenn, Alan J. 1953- |
author_GND | (DE-588)13565243X |
author_facet | Fenn, Alan J. 1953- |
author_role | aut |
author_sort | Fenn, Alan J. 1953- |
author_variant | a j f aj ajf |
building | Verbundindex |
bvnumber | BV035042247 |
callnumber-first | T - Technology |
callnumber-label | TK6590 |
callnumber-raw | TK6590.A6 |
callnumber-search | TK6590.A6 |
callnumber-sort | TK 46590 A6 |
callnumber-subject | TK - Electrical and Nuclear Engineering |
ctrlnum | (OCoLC)213107289 (DE-599)BVBBV035042247 |
dewey-full | 621.38483 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 621 - Applied physics |
dewey-raw | 621.38483 |
dewey-search | 621.38483 |
dewey-sort | 3621.38483 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Elektrotechnik / Elektronik / Nachrichtentechnik |
discipline_str_mv | Elektrotechnik / Elektronik / Nachrichtentechnik |
format | Book |
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id | DE-604.BV035042247 |
illustrated | Illustrated |
index_date | 2024-07-02T21:53:33Z |
indexdate | 2024-07-09T21:20:52Z |
institution | BVB |
isbn | 9781596932739 1596932732 |
language | English |
lccn | 2008271957 |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-016711048 |
oclc_num | 213107289 |
open_access_boolean | |
owner | DE-29T |
owner_facet | DE-29T |
physical | XVI, 394 S. Ill., graph. Darst. 24 cm |
publishDate | 2008 |
publishDateSearch | 2008 |
publishDateSort | 2008 |
publisher | Artech House |
record_format | marc |
series2 | Artech House radar series |
spelling | Fenn, Alan J. 1953- Verfasser (DE-588)13565243X aut Adaptive antennas and phased arrays for radar and communications Alan J. Fenn Boston [u.a.] Artech House 2008 XVI, 394 S. Ill., graph. Darst. 24 cm txt rdacontent n rdamedia nc rdacarrier Artech House radar series Includes bibliographical references and index Antenna arrays Antennas (Electronics) Telecommunication Radar Phasengesteuerte Antennengruppe (DE-588)4174156-0 gnd rswk-swf Adaptive Antenne (DE-588)4226531-9 gnd rswk-swf Adaptive Antenne (DE-588)4226531-9 s DE-604 Phasengesteuerte Antennengruppe (DE-588)4174156-0 s HEBIS Datenaustausch Darmstadt application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016711048&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Fenn, Alan J. 1953- Adaptive antennas and phased arrays for radar and communications Antenna arrays Antennas (Electronics) Telecommunication Radar Phasengesteuerte Antennengruppe (DE-588)4174156-0 gnd Adaptive Antenne (DE-588)4226531-9 gnd |
subject_GND | (DE-588)4174156-0 (DE-588)4226531-9 |
title | Adaptive antennas and phased arrays for radar and communications |
title_auth | Adaptive antennas and phased arrays for radar and communications |
title_exact_search | Adaptive antennas and phased arrays for radar and communications |
title_exact_search_txtP | Adaptive antennas and phased arrays for radar and communications |
title_full | Adaptive antennas and phased arrays for radar and communications Alan J. Fenn |
title_fullStr | Adaptive antennas and phased arrays for radar and communications Alan J. Fenn |
title_full_unstemmed | Adaptive antennas and phased arrays for radar and communications Alan J. Fenn |
title_short | Adaptive antennas and phased arrays for radar and communications |
title_sort | adaptive antennas and phased arrays for radar and communications |
topic | Antenna arrays Antennas (Electronics) Telecommunication Radar Phasengesteuerte Antennengruppe (DE-588)4174156-0 gnd Adaptive Antenne (DE-588)4226531-9 gnd |
topic_facet | Antenna arrays Antennas (Electronics) Telecommunication Radar Phasengesteuerte Antennengruppe Adaptive Antenne |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016711048&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT fennalanj adaptiveantennasandphasedarraysforradarandcommunications |