Efficient methods for determining precise orbits of low earth orbiters using the global positioning system:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Zürich
Schweizerische Geodätische Kommission
2003
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Schriftenreihe: | Geodätisch-geophysikalische Arbeiten in der Schweiz
65 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Literaturverz. S. 209 - 213 |
Beschreibung: | XVIII, 214 S. Ill., graph. Darst. |
ISBN: | 3908440084 |
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Datensatz im Suchindex
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adam_text | GEODATISCH-GEOPHYSIKALISCHE ARBEITEN IN DER SCHWEIZ (FORTSETZUNG DER
PUBLIKATIONSREIHE ASTRONOMISCH-GEODATISCHE ARBEITEN IN DER SCHWEIZ»)
HERAUSGEGEBEN VON DER SCHWEIZERISCHEN GEODATISCHEN KOMMISSION (ORGAN DER
SCHWEIZERISCHEN AKADEMIE DER NATURWISSENSCHAFTEN) FUNFUNDSECHZIGSTER
BAND EFFICIENT METHODS FOR DETERMINING VOLUME 65 PRECISE ORBITS OF LOW
EARTH ORBITERS USING THE GLOBAL POSITIONING SYSTEM SUB GFITTINGEN 7 217
406 734 HEIKE BOCK 2003 CONTENTS LIST OF FIGURES V LIST OF TABLES XIII
FREQUENTLY USED ACRONYMS XVII 1. INTRODUCTION 1 2. GENERAL INFORMATION 5
2.1 THE GLOBAL POSITIONING SYSTEM - GPS 5 2.2 INSTITUTIONS RELEVANT TO
THIS WORK 6 2.2.1 THE INTERNATIONAL GPS SERVICE 6 2.2.2 THE CENTER FOR
ORBIT DETERMINATION IN EUROPE - CODE 6 2.2.3 THE IGS LEO PILOT PROJECT 7
2.3 LOW EARTH ORBITERS TRACKING GPS SIGNALS 8 2.3.1 TOPEX/POSEIDON 8
2.3.2 MICROLAB-1/GPS/MET 9 2.3.3 GFO, 0RSTED AND SUNSAT 9 2.3.4 CHAMP 12
2.3.5 SAC-C 12 2.3.6 JASON-1 14 2.3.7 GRACE 14 2.3.8 ICESAT 16 2.3.9
GOCE 17 2.4 PRECISE ORBIT DETERMINATION FOR LEOS USING GPS 17 2.4.1
DYNAMIC AND REDUCED-DYNAMIC STRATEGIES 19 2.4.2 KINEMATIC STRATEGIES 20
2.5 DATA PRE-PROCESSING 20 3. KINEMATIC POINT POSITIONING ON THE
ZERO-DIFFERENCE LEVEL 23 3.1 PRINCIPLES OF PROCESSING 23 3.2 CODE
SOLUTION 25 3.2.1 CODE POINT POSITIONING WITHOUT A PRIORI INFORMATION 28
3.3 PHASE-DIFFERENCE SOLUTION 29 CONTENTS 3.4 COMBINATION OF CODE AND
PHASE 32 3.4.1 NEGLECTING THE CORRELATIONS 33 3.4.2 ESTIMATING
POSITION-DIFFERENCES 34 3.4.3 CORRECT CORRELATIONS 38 3.5 PRACTICAL
REALIZATION 39 3.6 SIMULATIONS 41 3.6.1 CODE 41 3.6.2 COMBINED POSITIONS
AND PHASE ONLY POSITIONS 43 3.6.3 FURTHER STUDIES 49 3.7 SATELLITE CLOCK
INTERPOLATION 52 4. DATA PRE-PROCESSING 57 4.1 OUTLIER
DETECTION-PRINCIPLE OF MAJORITY VOTING 57 4.2 ITERATIVE SCREENING
PROCEDURE 59 4.3 PROCESSING ISSUES RELATED TO LEOS 60 4.3.1 GPS RECEIVER
PERFORMANCE 60 4.3.2 DATA QUALITY AND PRE-SCREENING OPTIONS 63 4.3.3
ELEVATION-DEPENDENT WEIGHTING AND CUT-OFF ANGLE 71 4.4 DEVELOPMENT OF A
DATA SCREENING PROCEDURE FOR A PERMANENT NETWORK 72 4.4.1 SCREENING OF
CODE OBSERVATIONS 73 4.4.2 SCREENING OF PHASE OBSERVATIONS 74 5. DYNAMIC
AND REDUCED-DYNAMIC ORBIT MODELING 77 5.1 PROGRAM SATORB 78 5.2
GRAVITATIONAL FORCES 79 5.2.1 EARTH POTENTIAL 79 5.2.2 SOLID EARTH AND
OCEAN TIDES 79 5.2.3 THIRD-BODY PERTURBATIONS 80 5.2.4 PRECESSION,
NUTATION AND POLAR MOTION 80 5.3 NON-GRAVITATIONAL FORCES 80 5.3.1
ATMOSPHERIC DRAG 80 5.3.2 DIRECT SOLAR RADIATION PRESSURE 81 5.3.3
EMPIRICAL PARAMETERS 81 5.3.4 EARTH ALBEDO 82 5.4 MEASURING THE
NON-GRAVITATIONAL FORCES: ACCELEROMETER DATA 82 5.5 PSEUDO-STOCHASTIC
PULSES 85 6. RESULTS AND APPLICATIONS 87 6.1 EVALUATION OF KINEMATIC
SOLUTIONS 87 6.2 CHAMP 152/2001 AND SAC-C 051/2001 88 6.2.1 DIFFERENT
VALUES FOR THRESHOLD/3 89 6.2.2 DIFFERENT ELEVATION CUT-OFF ANGLES AND
ELEVATION-DEPENDENT WEIGHTING FUNCTIONS 92 6.3 IGS TEST CAMPAIGN - DOY
140 TO 150/2001 98 CONTENTS 6.3.1 DATA QUALITY 99 6.3.2 DATA
PRE-PROCESSING 100 6.3.3 INDEPENDENT COMPARISON 124 6.3.4 SUMMARY 128
6.4 CHAMP AND SAC-C-055/2002 TO 089/2002 131 6.4.1 DATA QUALITY 131
6.4.2 DATA PROCESSING 132 6.4.3 SOLUTIONS WITH CODE RAPID PRODUCTS 136
6.4.4 SOLUTIONS WITH CODE FINAL PRODUCTS 155 6.4.5 SUMMARY 172 6.5 USE
OF DIFFERENT GRAVITY FIELD MODELS FOR THE REDUCED-DYNAMIC ORBIT MODELING
.... 176 6.5.1 COMBINED POSITIONS AS PSEUDO-OBSERVATIONS 177 6.5.2 CODE
POSITIONS AND PHASE POSITION-DIFFERENCES AS PSEUDO-OBSERVATIONS 182 6.6
STOCHASTIC PULSES AND ACCELEROMETER MEASUREMENTS 187 6.7 DATA SCREENING
PROCEDURE FOR A PERMANENT GROUND NETWORK 197 6.7.1 COMPARISON WITH
MAUPRP 197 7. SUMMARY AND OUTLOOK 203 BIBLIOGRAPHY 209 IN
|
adam_txt |
GEODATISCH-GEOPHYSIKALISCHE ARBEITEN IN DER SCHWEIZ (FORTSETZUNG DER
PUBLIKATIONSREIHE ASTRONOMISCH-GEODATISCHE ARBEITEN IN DER SCHWEIZ»)
HERAUSGEGEBEN VON DER SCHWEIZERISCHEN GEODATISCHEN KOMMISSION (ORGAN DER
SCHWEIZERISCHEN AKADEMIE DER NATURWISSENSCHAFTEN) FUNFUNDSECHZIGSTER
BAND EFFICIENT METHODS FOR DETERMINING VOLUME 65 PRECISE ORBITS OF LOW
EARTH ORBITERS USING THE GLOBAL POSITIONING SYSTEM SUB GFITTINGEN 7 217
406 734 HEIKE BOCK 2003 CONTENTS LIST OF FIGURES V LIST OF TABLES XIII
FREQUENTLY USED ACRONYMS XVII 1. INTRODUCTION 1 2. GENERAL INFORMATION 5
2.1 THE GLOBAL POSITIONING SYSTEM - GPS 5 2.2 INSTITUTIONS RELEVANT TO
THIS WORK 6 2.2.1 THE INTERNATIONAL GPS SERVICE 6 2.2.2 THE CENTER FOR
ORBIT DETERMINATION IN EUROPE - CODE 6 2.2.3 THE IGS LEO PILOT PROJECT 7
2.3 LOW EARTH ORBITERS TRACKING GPS SIGNALS 8 2.3.1 TOPEX/POSEIDON 8
2.3.2 MICROLAB-1/GPS/MET 9 2.3.3 GFO, 0RSTED AND SUNSAT 9 2.3.4 CHAMP 12
2.3.5 SAC-C 12 2.3.6 JASON-1 14 2.3.7 GRACE 14 2.3.8 ICESAT 16 2.3.9
GOCE 17 2.4 PRECISE ORBIT DETERMINATION FOR LEOS USING GPS 17 2.4.1
DYNAMIC AND REDUCED-DYNAMIC STRATEGIES 19 2.4.2 KINEMATIC STRATEGIES 20
2.5 DATA PRE-PROCESSING 20 3. KINEMATIC POINT POSITIONING ON THE
ZERO-DIFFERENCE LEVEL 23 3.1 PRINCIPLES OF PROCESSING 23 3.2 CODE
SOLUTION 25 3.2.1 CODE POINT POSITIONING WITHOUT A PRIORI INFORMATION 28
3.3 PHASE-DIFFERENCE SOLUTION 29 CONTENTS 3.4 COMBINATION OF CODE AND
PHASE 32 3.4.1 NEGLECTING THE CORRELATIONS 33 3.4.2 ESTIMATING
POSITION-DIFFERENCES 34 3.4.3 CORRECT CORRELATIONS 38 3.5 PRACTICAL
REALIZATION 39 3.6 SIMULATIONS 41 3.6.1 CODE 41 3.6.2 COMBINED POSITIONS
AND PHASE ONLY POSITIONS 43 3.6.3 FURTHER STUDIES 49 3.7 SATELLITE CLOCK
INTERPOLATION 52 4. DATA PRE-PROCESSING 57 4.1 OUTLIER
DETECTION-PRINCIPLE OF MAJORITY VOTING 57 4.2 ITERATIVE SCREENING
PROCEDURE 59 4.3 PROCESSING ISSUES RELATED TO LEOS 60 4.3.1 GPS RECEIVER
PERFORMANCE 60 4.3.2 DATA QUALITY AND PRE-SCREENING OPTIONS 63 4.3.3
ELEVATION-DEPENDENT WEIGHTING AND CUT-OFF ANGLE 71 4.4 DEVELOPMENT OF A
DATA SCREENING PROCEDURE FOR A PERMANENT NETWORK 72 4.4.1 SCREENING OF
CODE OBSERVATIONS 73 4.4.2 SCREENING OF PHASE OBSERVATIONS 74 5. DYNAMIC
AND REDUCED-DYNAMIC ORBIT MODELING 77 5.1 PROGRAM SATORB 78 5.2
GRAVITATIONAL FORCES 79 5.2.1 EARTH POTENTIAL 79 5.2.2 SOLID EARTH AND
OCEAN TIDES 79 5.2.3 THIRD-BODY PERTURBATIONS 80 5.2.4 PRECESSION,
NUTATION AND POLAR MOTION 80 5.3 NON-GRAVITATIONAL FORCES 80 5.3.1
ATMOSPHERIC DRAG 80 5.3.2 DIRECT SOLAR RADIATION PRESSURE 81 5.3.3
EMPIRICAL PARAMETERS 81 5.3.4 EARTH ALBEDO 82 5.4 MEASURING THE
NON-GRAVITATIONAL FORCES: ACCELEROMETER DATA 82 5.5 PSEUDO-STOCHASTIC
PULSES 85 6. RESULTS AND APPLICATIONS 87 6.1 EVALUATION OF KINEMATIC
SOLUTIONS 87 6.2 CHAMP 152/2001 AND SAC-C 051/2001 88 6.2.1 DIFFERENT
VALUES FOR THRESHOLD/3 89 6.2.2 DIFFERENT ELEVATION CUT-OFF ANGLES AND
ELEVATION-DEPENDENT WEIGHTING FUNCTIONS 92 6.3 IGS TEST CAMPAIGN - DOY
140 TO 150/2001 98 CONTENTS 6.3.1 DATA QUALITY 99 6.3.2 DATA
PRE-PROCESSING 100 6.3.3 INDEPENDENT COMPARISON 124 6.3.4 SUMMARY 128
6.4 CHAMP AND SAC-C-055/2002 TO 089/2002 131 6.4.1 DATA QUALITY 131
6.4.2 DATA PROCESSING 132 6.4.3 SOLUTIONS WITH CODE RAPID PRODUCTS 136
6.4.4 SOLUTIONS WITH CODE FINAL PRODUCTS 155 6.4.5 SUMMARY 172 6.5 USE
OF DIFFERENT GRAVITY FIELD MODELS FOR THE REDUCED-DYNAMIC ORBIT MODELING
. 176 6.5.1 COMBINED POSITIONS AS PSEUDO-OBSERVATIONS 177 6.5.2 CODE
POSITIONS AND PHASE POSITION-DIFFERENCES AS PSEUDO-OBSERVATIONS 182 6.6
STOCHASTIC PULSES AND ACCELEROMETER MEASUREMENTS 187 6.7 DATA SCREENING
PROCEDURE FOR A PERMANENT GROUND NETWORK 197 6.7.1 COMPARISON WITH
MAUPRP 197 7. SUMMARY AND OUTLOOK 203 BIBLIOGRAPHY 209 IN |
any_adam_object | 1 |
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author | Bock, Heike |
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callnumber-search | TL1080 |
callnumber-sort | TL 41080 |
callnumber-subject | TL - Motor Vehicles and Aeronautics |
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dewey-full | 629.4/113 |
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dewey-ones | 629 - Other branches of engineering |
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dewey-search | 629.4/113 |
dewey-sort | 3629.4 3113 |
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discipline | Verkehr / Transport |
discipline_str_mv | Verkehr / Transport |
format | Book |
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id | DE-604.BV022154492 |
illustrated | Illustrated |
index_date | 2024-07-02T16:18:24Z |
indexdate | 2024-07-09T20:51:29Z |
institution | BVB |
isbn | 3908440084 |
language | English |
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physical | XVIII, 214 S. Ill., graph. Darst. |
publishDate | 2003 |
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publisher | Schweizerische Geodätische Kommission |
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series | Geodätisch-geophysikalische Arbeiten in der Schweiz |
series2 | Geodätisch-geophysikalische Arbeiten in der Schweiz |
spelling | Bock, Heike Verfasser aut Efficient methods for determining precise orbits of low earth orbiters using the global positioning system Heike Bock Zürich Schweizerische Geodätische Kommission 2003 XVIII, 214 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Geodätisch-geophysikalische Arbeiten in der Schweiz 65 Literaturverz. S. 209 - 213 Artificial satellites Orbits Global Positioning System Kinematics Mikrowellenempfänger (DE-588)4590561-7 gnd rswk-swf Robustheit (DE-588)4126481-2 gnd rswk-swf Effizienz (DE-588)4013585-8 gnd rswk-swf Satellit (DE-588)4136498-3 gnd rswk-swf GPS (DE-588)4216824-7 gnd rswk-swf Effizienz (DE-588)4013585-8 s DE-604 Robustheit (DE-588)4126481-2 s Satellit (DE-588)4136498-3 s GPS (DE-588)4216824-7 s Mikrowellenempfänger (DE-588)4590561-7 s Geodätisch-geophysikalische Arbeiten in der Schweiz 65 (DE-604)BV001895327 GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=015369148&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Bock, Heike Efficient methods for determining precise orbits of low earth orbiters using the global positioning system Geodätisch-geophysikalische Arbeiten in der Schweiz Artificial satellites Orbits Global Positioning System Kinematics Mikrowellenempfänger (DE-588)4590561-7 gnd Robustheit (DE-588)4126481-2 gnd Effizienz (DE-588)4013585-8 gnd Satellit (DE-588)4136498-3 gnd GPS (DE-588)4216824-7 gnd |
subject_GND | (DE-588)4590561-7 (DE-588)4126481-2 (DE-588)4013585-8 (DE-588)4136498-3 (DE-588)4216824-7 |
title | Efficient methods for determining precise orbits of low earth orbiters using the global positioning system |
title_auth | Efficient methods for determining precise orbits of low earth orbiters using the global positioning system |
title_exact_search | Efficient methods for determining precise orbits of low earth orbiters using the global positioning system |
title_exact_search_txtP | Efficient methods for determining precise orbits of low earth orbiters using the global positioning system |
title_full | Efficient methods for determining precise orbits of low earth orbiters using the global positioning system Heike Bock |
title_fullStr | Efficient methods for determining precise orbits of low earth orbiters using the global positioning system Heike Bock |
title_full_unstemmed | Efficient methods for determining precise orbits of low earth orbiters using the global positioning system Heike Bock |
title_short | Efficient methods for determining precise orbits of low earth orbiters using the global positioning system |
title_sort | efficient methods for determining precise orbits of low earth orbiters using the global positioning system |
topic | Artificial satellites Orbits Global Positioning System Kinematics Mikrowellenempfänger (DE-588)4590561-7 gnd Robustheit (DE-588)4126481-2 gnd Effizienz (DE-588)4013585-8 gnd Satellit (DE-588)4136498-3 gnd GPS (DE-588)4216824-7 gnd |
topic_facet | Artificial satellites Orbits Global Positioning System Kinematics Mikrowellenempfänger Robustheit Effizienz Satellit GPS |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=015369148&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV001895327 |
work_keys_str_mv | AT bockheike efficientmethodsfordeterminingpreciseorbitsoflowearthorbitersusingtheglobalpositioningsystem |