Radionavigation systems:
Gespeichert in:
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Boston [u.a.]
Artech House
2008
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Schriftenreihe: | GNSS technology and applications series
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XVI, 392 S. Ill., graph. Darst. |
ISBN: | 1596933542 9781596933545 |
Internformat
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Datensatz im Suchindex
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adam_text | RADIONAVIGATION SYSTEMS BOERJE FORSSELL 1 ARTECH HOUSE BOSTON|LONDON
ARTECHHOUSE.COM CONTENTS PREFACE XIII PART I: TERRESTRIAL SYSTEMS 1 1
THE F UNDAMENTAIS OF TERRESTRIAL NAVIGATION 3 1.1 THE SHAPE OF THE EARTH
3 1.2 MAPS AND COORDINATE SYSTEMS/DATUM 6 1.3 DISTANCES AND DIRECTIONS
ON THE SURFACE OF THE EARTH 13 1.3.1 GREAT CIRCLE COURSE ON A SPHERICAL
EARTH 13 1.3.2 LOXODROME COURSE 15 1.3.3 DISTANCES AND DIRECTIONS ON AN
ELLIPSOIDAL EARTH 16 2 ERROR CALCULATIONS 19 2.1 LINES OF POSITION 19
2.1.1 ERRORS IN LINES OF POSITION 19 2.2 THE GEOMETRICAL INFLUENCE ON
TWO-DIMENSIONAL POSITION ERRORS 21 2.2.1 ERRORS IN MEASUREMENTS OF
DISTANCE AND DISTANCE DIFFERENCES 21 2.2.1.1 DISTANCE MEASUREMENTS 21
2.2.1.2 MEASUREMENTS OF DISTANCE DIFFERENCES 23 2.2.2 ERROR ELLIPSES 30
2.2.2.1 DISTANCE MEASUREMENT ERROR ELLIPSES 35 2.2.2.2 ERROR ELLIPSES
FOR A HYPERBOLIC NAVIGATION SYSTEM 37 2.3 ACCURACIES 40 2.4
TWO-DIMENSIONAL POSITION DETERMINATION BY MEANS OF MORE THAN TWO LOPS 45
V VI CONTENTS 3 WAVE PROPAGATION 3.1 FREE SPACE PROPAGATION 3.2
REFLECTION FROM SURROUNDINGS 3.3 THE GROUND WAVE 3.4 TROPOSPHERIC
INFLUENCE 3.5 IONOSPHERIC INFLUENCE SYSTEM DESCRIPTIONS 4 HYPERBOLIC
SYSTEMS 4.1 INTRODUCTION 4.2 GENERAL 4.3 PHASE MEASUREMENTS 4.4 OMEGA
4.4.1 GENERAL 4.4.2 SIGNAL FORMAT 4.4.3 WAVE PROPAGATION AT VLF 4.4.3.1
GENERAL 4.4.3.2 CONDITIONS IN THE LOWER PART OF THE IONOSPHERE 4.4.3.3
THE DIRECTIONAL DEPENDENCE OF THE REFLECTION COEFFICIENT OF THE
IONOSPHERE 4.4.3.4 INFLUENCE OF THE EARTH AND THE SOLUTION OF THE WAVE
EQUATIONS 4.4.4 RECEIVERS 4.4.5 TRANSMITTERS 4.4.6 ACCURACY 4.4.7
DIFFERENTIAL OMEGA 4.4.8 PROSPECTS 4.5 DECCA 4.5.1 INTRODUCTION 4.5.2
FREQUENCIES 4.5.3 RECEIVERS 4.5.4 TRANSMITTER STATIONS 4.5.5 MAPS AND
CORRECTIONS OF THE MEASUREMENT RESULT 4.5.6 ACCURACY AND COVERAGE 4.5.7
PERSPECTIVES 4.6 LORAN-C 4.6.1 GENERAL 4.6.2 SIGNAL FORMAT 4.6.3
INTERFERENCE AND USE OF PULSE GROUPS CONTENTS VII 4.6.4 4.6.5 4.6.6
4.6.7 4.6.8 4.6.9 4.6.10 CODED PULSE GROUPS RECEIVERS GROUPING OF PULSES
FOR AUTOMATIC SEARCH TRANSMITTERS ACCURACY AND RAENGE DIFFERENTIAL
LORAN-C PROSPECTS 122 123 131 136 138 140 143 5 DIRECTION FINDING 146
5.1 INTRODUCTION 146 5.2 FREQUENCIES AND TRANSMITTERS 147 5.3
DIRECTIVITY 148 5.4 RECEIVER ANTENNAE 149 5.4.1 ANTENNAE FOR IMPROVED
ACCURACY 154 5.4.1.1 THE ADCOCK ANTENNA 154 5.4.1.2 DOPPLER DIRECTION
FINDERS 156 5.5 ACCURACIES 158 6 AIRCRAFT SYSTEMS 160 6.1 INTRODUCTION
160 6.2 VOR 162 6.2.1 OPERATION 162 6.2.2 THE RECEIVER 163 6.2.3 DOPPLER
VOR 164 6.3 DME 166 6.3.1 PRINCIPLES OF OPERATION 166 6.3.2 SEARCH
PROCEDURE 167 6.3.3 THE TRANSPONDER 169 6.3.4 ACCURACIES/USE 170 6.3.5
DME/P 170 6.4 ILS 175 6.4.1 SYSTEM PRINCIPLES 175 6.4.2 MARKERS 176
6.4.3 ANGULAR INFORMATION 177 6.4.4 ACCURACY/SOURCES OF ERROR 180 6.5
MLS 182 6.5.1 INTRODUCTION 182 6.5.2 TRSB ANGULAR INFORMATION 183 6.5.3
THE DATA MESSAGE 188 6.5.4 USE 188 6.5.5 ACCURACIES AND COVERAGE 188
6.5.6 COSTS AND PERSPECTIVES 191 VIII CONTENTS PART II: SATELLITE
SYSTEMS 193 7 SATELLITE ORBITS AND GEOMETRY 195 7.1 INTRODUCTION 195 7.2
KEPLER SLAWS 195 7.3 DISTORTIONOF THEORBIT 196 7.4 COORDINATE SYSTEMS
198 8 SATELLITE NAVIGATION PRINCIPLES 204 8.1 FREQUENCY MEASUREMENTS 204
8.2 TIME MEASUREMENTS 206 8.3 MEASUREMENT PRINCIPLES 206 9 ERROR
CALCULATIONS 209 9.1 ERROR SOURCES 209 9.2 THE GEOMETRICAL INFLUENCE ON
THE ACCURACY 214 9.2.1 FREQUENCY MEASUREMENTS 214 9.2.2 TIME
MEASUREMENTS 217 9.2.2.1 CALCULATION OF GEOMETRICAL DILUTION OF POSITION
217 SYSTEM DESCRIPTIONS 225 225 225 225 229 229 232 235 242 244 245 247
249 11 SPREAD SPECTRUM: CODING OF SATELLITE SIGNALS 250 11.1
INTRODUCTION 250 10 TRANSIT 10.1 10.2 10.3 10.4 10.5 10.6 10.7 10.8 10.9
INTRODUCTION THE SATELLITES NAVIGATION PRINCIPLES 10.3.1 SATELLITE
SIGNALS 10.3.2 POSITION MEASUREMENTS THE RECEIVER THE USE OF TWO CARRIER
FREQUENCIES THE ITERATION PROCEDURE ACCURACY TRANSLOCATION FIELDS OF
UTILIZATION/FUTURE CONTENTS IX 11.2 SPREAD SPECTRUM 251 11.2.1
PRINCIPLES 251 11.2.2 SPREADING FUNCTIONS 252 11.2.3 THE CORRELATION
FUNCTION 254 11.2.4 GENERATION OF THE CODES (SPREADING FUNCTIONS) 258
11.2.5 THERECEIVER 261 11.3 SPREAD SPECTRUM IN NAVSTAR/GPS 267 12
NAVSTAR/GPS 272 12.1 INTRODUCTION 12.2 SATELLITE ORBITS 12.3 THE
SATELLITES 12.4 THE CONTROL SEGMENT 12.5 THE NAVIGATION MESSAGE 12.5.1
INTRODUCTION 12.5.2 TLMANDHOW 12.5.3 DATA BLOCK 1 12.5.3.1 CLOCK
CORRECTIONS 12.5.3.2 AGE OF DATA/GROUP DELAY 12.5.3.3 CORRECTIONS OF
IONOSPHERIC DELAYS 12.5.4 DATA BLOCK 2 12.5.4.1 INTRODUCTION 12.5.4.2
PARAMETER REPRESENTATION SELECTION 12.5.5 DATA BLOCK 3 12.6 RECEIVERS
12.6.1 INTRODUCTION 12.6.2 RECEIVER TYPES 12.6.3 RECEIVER DESCRIPTION
12.6.4 CLOCK AND FREQUENCY STABILITY 12.6.5 ANTENNAE 12.7 DIFFERENTIAL
GPS 12.7.1 PRESUMPTIONS AND POSSIBILITIES 12.7.2 WORK UP TO NOW 12.8
INTERFEROMETRIC USE 12.9 ACCURACY 12.10 INTEGRATION WITH OTHER
NAVIGATION SYSTEMS 12.10.1 GPS AND INERTIAL NAVIGATION SYSTEMS 12.10.2
GPS AND LORAN-C 12.10.3 OTHER COMBINATIONS 12.11 PERSPECTIVES 272 272
276 278 281 281 281 281 284 284 286 287 287 289 292 293 293 294 297 303
304 306 306 308 311 315 318 318 319 320 321 X CONTENTS 13 GLONASS 322
322 323 324 325 326 327 327 GLONASS 13.1 13.2 13.3 13.4 13.5 13.6 13.7
INTRODUCTION SATELLITE ORBITS THE NAVIGATION SIGNALS THE CODES THE
NAVIGATION MESSAGE RECEIVERS ACCURACY OTHER SATELLITE NAVIGATION 14.1
14.2 14.3 14.4 14.5 INTRODUCTION TSIKADA STARFIX GEOSTAR/LOCSTAR NAVSAT
14 OTHER SATELLITE NAVIGATION SYSTEMS 328 328 329 330 330 332 APPENDIX
1: DATUM TRANSFORMATION 335 APPENDIX 2: FORMULAS FROM SPHERICAL
TRIGONOMETRY 338 A2.1 THEOREMS CONCERNING RIGHT-ANGLED SPHERICAL
TRIANGLES 338 A2.2 THEOREMS CONCERNING ARBITRARY SPHERICAL TRIANGLES 339
APPENDIX 3: THE RADII OF CURVATURE OF AN ELLIPSOIDAL SURFACE 341
APPENDIX 4: THE STANDARD DEVIATION OF THE ERROR IN A TWO-DIMENSIONAL
POSITION 344 APPENDIX 5: POSITION DETERMINATION BY THE METHOD OF LEAST
SQUARES 346 APPENDIX 6: ERRORS IN DECCA USER LINES OF POSITION DUE TO
PHASE ERRORS CAUSED BY THE MASTER-TO-SLAVE, MASTER-TO-USER AND
SLAVE-TO-USER SIGNAL PATHS 352 APPENDIX 7: SATELLITES IN ORBIT 356 A7.1
DERIVATION OF KEPLER SLAWS 356 A7.2 THE ORBITAL VELOCITY 361 A7.3
ORBITAL COORDINATES AS TIME FUNCTIONS 363 A7.4 LAUNCHING OF SATELLITES
INTO A DESIRED ORBIT 368 CONTENTS XI APPENDIX 8: A METHOD OF SATELLITE
SELECTION IN TIME MEASUREMENT SYSTEMS 371 APPENDIX 9: BASIC KAIMAN
FIITER EQUATIONS 375 REFERENCES 377 INDEX 387
|
adam_txt |
RADIONAVIGATION SYSTEMS BOERJE FORSSELL 1 ARTECH HOUSE BOSTON|LONDON
ARTECHHOUSE.COM CONTENTS PREFACE XIII PART I: TERRESTRIAL SYSTEMS 1 1
THE F UNDAMENTAIS OF TERRESTRIAL NAVIGATION 3 1.1 THE SHAPE OF THE EARTH
3 1.2 MAPS AND COORDINATE SYSTEMS/DATUM 6 1.3 DISTANCES AND DIRECTIONS
ON THE SURFACE OF THE EARTH 13 1.3.1 GREAT CIRCLE COURSE ON A SPHERICAL
EARTH 13 1.3.2 LOXODROME COURSE 15 1.3.3 DISTANCES AND DIRECTIONS ON AN
ELLIPSOIDAL EARTH 16 2 ERROR CALCULATIONS 19 2.1 LINES OF POSITION 19
2.1.1 ERRORS IN LINES OF POSITION 19 2.2 THE GEOMETRICAL INFLUENCE ON
TWO-DIMENSIONAL POSITION ERRORS 21 2.2.1 ERRORS IN MEASUREMENTS OF
DISTANCE AND DISTANCE DIFFERENCES 21 2.2.1.1 DISTANCE MEASUREMENTS 21
2.2.1.2 MEASUREMENTS OF DISTANCE DIFFERENCES 23 2.2.2 ERROR ELLIPSES 30
2.2.2.1 DISTANCE MEASUREMENT ERROR ELLIPSES 35 2.2.2.2 ERROR ELLIPSES
FOR A HYPERBOLIC NAVIGATION SYSTEM 37 2.3 ACCURACIES 40 2.4
TWO-DIMENSIONAL POSITION DETERMINATION BY MEANS OF MORE THAN TWO LOPS 45
V VI CONTENTS 3 WAVE PROPAGATION 3.1 FREE SPACE PROPAGATION 3.2
REFLECTION FROM SURROUNDINGS 3.3 THE GROUND WAVE 3.4 TROPOSPHERIC
INFLUENCE 3.5 IONOSPHERIC INFLUENCE SYSTEM DESCRIPTIONS 4 HYPERBOLIC
SYSTEMS 4.1 INTRODUCTION 4.2 GENERAL 4.3 PHASE MEASUREMENTS 4.4 OMEGA
4.4.1 GENERAL 4.4.2 SIGNAL FORMAT 4.4.3 WAVE PROPAGATION AT VLF 4.4.3.1
GENERAL 4.4.3.2 CONDITIONS IN THE LOWER PART OF THE IONOSPHERE 4.4.3.3
THE DIRECTIONAL DEPENDENCE OF THE REFLECTION COEFFICIENT OF THE
IONOSPHERE 4.4.3.4 INFLUENCE OF THE EARTH AND THE SOLUTION OF THE WAVE
EQUATIONS 4.4.4 RECEIVERS 4.4.5 TRANSMITTERS 4.4.6 ACCURACY 4.4.7
DIFFERENTIAL OMEGA 4.4.8 PROSPECTS 4.5 DECCA 4.5.1 INTRODUCTION 4.5.2
FREQUENCIES 4.5.3 RECEIVERS 4.5.4 TRANSMITTER STATIONS 4.5.5 MAPS AND
CORRECTIONS OF THE MEASUREMENT RESULT 4.5.6 ACCURACY AND COVERAGE 4.5.7
PERSPECTIVES 4.6 LORAN-C 4.6.1 GENERAL 4.6.2 SIGNAL FORMAT 4.6.3
INTERFERENCE AND USE OF PULSE GROUPS CONTENTS VII 4.6.4 4.6.5 4.6.6
4.6.7 4.6.8 4.6.9 4.6.10 CODED PULSE GROUPS RECEIVERS GROUPING OF PULSES
FOR AUTOMATIC SEARCH TRANSMITTERS ACCURACY AND RAENGE DIFFERENTIAL
LORAN-C PROSPECTS 122 123 131 136 138 140 143 5 DIRECTION FINDING 146
5.1 INTRODUCTION 146 5.2 FREQUENCIES AND TRANSMITTERS 147 5.3
DIRECTIVITY 148 5.4 RECEIVER ANTENNAE 149 5.4.1 ANTENNAE FOR IMPROVED
ACCURACY 154 5.4.1.1 THE ADCOCK ANTENNA 154 5.4.1.2 DOPPLER DIRECTION
FINDERS 156 5.5 ACCURACIES 158 6 AIRCRAFT SYSTEMS 160 6.1 INTRODUCTION
160 6.2 VOR 162 6.2.1 OPERATION 162 6.2.2 THE RECEIVER 163 6.2.3 DOPPLER
VOR 164 6.3 DME 166 6.3.1 PRINCIPLES OF OPERATION 166 6.3.2 SEARCH
PROCEDURE 167 6.3.3 THE TRANSPONDER 169 6.3.4 ACCURACIES/USE 170 6.3.5
DME/P 170 6.4 ILS 175 6.4.1 SYSTEM PRINCIPLES 175 6.4.2 MARKERS 176
6.4.3 ANGULAR INFORMATION 177 6.4.4 ACCURACY/SOURCES OF ERROR 180 6.5
MLS 182 6.5.1 INTRODUCTION 182 6.5.2 TRSB ANGULAR INFORMATION 183 6.5.3
THE DATA MESSAGE 188 6.5.4 USE 188 6.5.5 ACCURACIES AND COVERAGE 188
6.5.6 COSTS AND PERSPECTIVES 191 VIII CONTENTS PART II: SATELLITE
SYSTEMS 193 7 SATELLITE ORBITS AND GEOMETRY 195 7.1 INTRODUCTION 195 7.2
KEPLER'SLAWS 195 7.3 DISTORTIONOF THEORBIT 196 7.4 COORDINATE SYSTEMS
198 8 SATELLITE NAVIGATION PRINCIPLES 204 8.1 FREQUENCY MEASUREMENTS 204
8.2 TIME MEASUREMENTS 206 8.3 MEASUREMENT PRINCIPLES 206 9 ERROR
CALCULATIONS 209 9.1 ERROR SOURCES 209 9.2 THE GEOMETRICAL INFLUENCE ON
THE ACCURACY 214 9.2.1 FREQUENCY MEASUREMENTS 214 9.2.2 TIME
MEASUREMENTS 217 9.2.2.1 CALCULATION OF GEOMETRICAL DILUTION OF POSITION
217 SYSTEM DESCRIPTIONS 225 225 225 225 229 229 232 235 242 244 245 247
249 11 SPREAD SPECTRUM: CODING OF SATELLITE SIGNALS 250 11.1
INTRODUCTION 250 10 TRANSIT 10.1 10.2 10.3 10.4 10.5 10.6 10.7 10.8 10.9
INTRODUCTION THE SATELLITES NAVIGATION PRINCIPLES 10.3.1 SATELLITE
SIGNALS 10.3.2 POSITION MEASUREMENTS THE RECEIVER THE USE OF TWO CARRIER
FREQUENCIES THE ITERATION PROCEDURE ACCURACY TRANSLOCATION FIELDS OF
UTILIZATION/FUTURE CONTENTS IX 11.2 SPREAD SPECTRUM 251 11.2.1
PRINCIPLES 251 11.2.2 SPREADING FUNCTIONS 252 11.2.3 THE CORRELATION
FUNCTION 254 11.2.4 GENERATION OF THE CODES (SPREADING FUNCTIONS) 258
11.2.5 THERECEIVER 261 11.3 SPREAD SPECTRUM IN NAVSTAR/GPS 267 12
NAVSTAR/GPS 272 12.1 INTRODUCTION 12.2 SATELLITE ORBITS 12.3 THE
SATELLITES 12.4 THE CONTROL SEGMENT 12.5 THE NAVIGATION MESSAGE 12.5.1
INTRODUCTION 12.5.2 TLMANDHOW 12.5.3 DATA BLOCK 1 12.5.3.1 CLOCK
CORRECTIONS 12.5.3.2 AGE OF DATA/GROUP DELAY 12.5.3.3 CORRECTIONS OF
IONOSPHERIC DELAYS 12.5.4 DATA BLOCK 2 12.5.4.1 INTRODUCTION 12.5.4.2
PARAMETER REPRESENTATION SELECTION 12.5.5 DATA BLOCK 3 12.6 RECEIVERS
12.6.1 INTRODUCTION 12.6.2 RECEIVER TYPES 12.6.3 RECEIVER DESCRIPTION
12.6.4 CLOCK AND FREQUENCY STABILITY 12.6.5 ANTENNAE 12.7 DIFFERENTIAL
GPS 12.7.1 PRESUMPTIONS AND POSSIBILITIES 12.7.2 WORK UP TO NOW 12.8
INTERFEROMETRIC USE 12.9 ACCURACY 12.10 INTEGRATION WITH OTHER
NAVIGATION SYSTEMS 12.10.1 GPS AND INERTIAL NAVIGATION SYSTEMS 12.10.2
GPS AND LORAN-C 12.10.3 OTHER COMBINATIONS 12.11 PERSPECTIVES 272 272
276 278 281 281 281 281 284 284 286 287 287 289 292 293 293 294 297 303
304 306 306 308 311 315 318 318 319 320 321 X CONTENTS 13 GLONASS 322
322 323 324 325 326 327 327 GLONASS 13.1 13.2 13.3 13.4 13.5 13.6 13.7
INTRODUCTION SATELLITE ORBITS THE NAVIGATION SIGNALS THE CODES THE
NAVIGATION MESSAGE RECEIVERS ACCURACY OTHER SATELLITE NAVIGATION 14.1
14.2 14.3 14.4 14.5 INTRODUCTION TSIKADA STARFIX GEOSTAR/LOCSTAR NAVSAT
14 OTHER SATELLITE NAVIGATION SYSTEMS 328 328 329 330 330 332 APPENDIX
1: DATUM TRANSFORMATION 335 APPENDIX 2: FORMULAS FROM SPHERICAL
TRIGONOMETRY 338 A2.1 THEOREMS CONCERNING RIGHT-ANGLED SPHERICAL
TRIANGLES 338 A2.2 THEOREMS CONCERNING ARBITRARY SPHERICAL TRIANGLES 339
APPENDIX 3: THE RADII OF CURVATURE OF AN ELLIPSOIDAL SURFACE 341
APPENDIX 4: THE STANDARD DEVIATION OF THE ERROR IN A TWO-DIMENSIONAL
POSITION 344 APPENDIX 5: POSITION DETERMINATION BY THE METHOD OF LEAST
SQUARES 346 APPENDIX 6: ERRORS IN DECCA USER LINES OF POSITION DUE TO
PHASE ERRORS CAUSED BY THE MASTER-TO-SLAVE, MASTER-TO-USER AND
SLAVE-TO-USER SIGNAL PATHS 352 APPENDIX 7: SATELLITES IN ORBIT 356 A7.1
DERIVATION OF KEPLER'SLAWS 356 A7.2 THE ORBITAL VELOCITY 361 A7.3
ORBITAL COORDINATES AS TIME FUNCTIONS 363 A7.4 LAUNCHING OF SATELLITES
INTO A DESIRED ORBIT 368 CONTENTS XI APPENDIX 8: A METHOD OF SATELLITE
SELECTION IN TIME MEASUREMENT SYSTEMS 371 APPENDIX 9: BASIC KAIMAN
FIITER EQUATIONS 375 REFERENCES 377 INDEX 387 |
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author | Forssell, Börje |
author_facet | Forssell, Börje |
author_role | aut |
author_sort | Forssell, Börje |
author_variant | b f bf |
building | Verbundindex |
bvnumber | BV023186316 |
callnumber-first | T - Technology |
callnumber-label | TL 695 |
callnumber-raw | TL 695 VK397 |
callnumber-search | TL 695 VK397 |
callnumber-sort | TL 3695 |
callnumber-subject | TL - Motor Vehicles and Aeronautics |
classification_rvk | ZI 9120 |
classification_tum | BAU 967f |
ctrlnum | (OCoLC)183262005 (DE-599)BVBBV023186316 |
dewey-full | 623.8932 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 623 - Military and nautical engineering |
dewey-raw | 623.8932 |
dewey-search | 623.8932 |
dewey-sort | 3623.8932 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Bauingenieurwesen Vermessungswesen Verkehr / Transport |
discipline_str_mv | Bauingenieurwesen Vermessungswesen Verkehr / Transport |
format | Book |
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id | DE-604.BV023186316 |
illustrated | Illustrated |
index_date | 2024-07-02T20:03:17Z |
indexdate | 2024-07-09T21:12:34Z |
institution | BVB |
isbn | 1596933542 9781596933545 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-016372781 |
oclc_num | 183262005 |
open_access_boolean | |
owner | DE-706 DE-91 DE-BY-TUM |
owner_facet | DE-706 DE-91 DE-BY-TUM |
physical | XVI, 392 S. Ill., graph. Darst. |
publishDate | 2008 |
publishDateSearch | 2008 |
publishDateSort | 2008 |
publisher | Artech House |
record_format | marc |
series2 | GNSS technology and applications series |
spelling | Forssell, Börje Verfasser aut Radionavigation systems Börje Forssell Boston [u.a.] Artech House 2008 XVI, 392 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier GNSS technology and applications series Radio in navigation Funknavigation (DE-588)4140926-7 gnd rswk-swf GPS (DE-588)4216824-7 gnd rswk-swf Funknavigation (DE-588)4140926-7 s GPS (DE-588)4216824-7 s DE-604 GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016372781&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Forssell, Börje Radionavigation systems Radio in navigation Funknavigation (DE-588)4140926-7 gnd GPS (DE-588)4216824-7 gnd |
subject_GND | (DE-588)4140926-7 (DE-588)4216824-7 |
title | Radionavigation systems |
title_auth | Radionavigation systems |
title_exact_search | Radionavigation systems |
title_exact_search_txtP | Radionavigation systems |
title_full | Radionavigation systems Börje Forssell |
title_fullStr | Radionavigation systems Börje Forssell |
title_full_unstemmed | Radionavigation systems Börje Forssell |
title_short | Radionavigation systems |
title_sort | radionavigation systems |
topic | Radio in navigation Funknavigation (DE-588)4140926-7 gnd GPS (DE-588)4216824-7 gnd |
topic_facet | Radio in navigation Funknavigation GPS |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016372781&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT forssellborje radionavigationsystems |