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GPS Trends in Precise Terrestrial, Airborne, and Spaceborne Applications

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Cover of 'GPS Trends in Precise Terrestrial, Airborne, and Spaceborne Applications'

Table of Contents

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    Book Overview
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    Chapter 1 The International GPS Service for Geodynamics (IGS): The Story
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    Chapter 2 IGS Combination of Precise GPS Satellite Ephemerides and Clocks
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    Chapter 3 Global GPS Data Flow from Station to User within the IGS
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    Chapter 4 Global Plate Kinematics Estimated by GPS Data of the IGS Core Network
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    Chapter 5 The Impact of IGS on the Analysyis of Regional GPS-Networks
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    Chapter 6 Variation in EOP and Station Coordinate Solutions from the Canadian Active Control System (CACS)
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    Chapter 7 Common Experiment of the Analysis Centre CODE and the Institute of Geodesy and Geodetic Astronomy of Warsaw University of Technology (IGGA WUT) on the Combination of Regional and Global Solutions
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    Chapter 8 Using GPS to Determine Earth Orientation
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    Chapter 9 The Permanent GPS Station at the University of Padova
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    Chapter 10 Analysis of Continuous GPS Observations for Geodynamics Purposes
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    Chapter 11 The Western Canada Deformation Array: An Update on GPS Solutions and Error Analysis
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    Chapter 12 The DGPS Service for the FRG
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    Chapter 13 Status of the Brazilian Network for Continuous Monitoring of GPS (RBMC)
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    Chapter 14 Weekly-ARC Approach to Improve the Resolution of the Long-Term Crustal Movements in Japanese GPS Fixed-Point Network
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    Chapter 15 Unification of Regional Vertical Datums Using GPS
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    Chapter 16 GPS Derived Displacements in the Azores Triple Junction Region
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    Chapter 17 Application of GPS Kinematic Method for Detection of Crustal Movements with High Temporal Resolution
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    Chapter 18 Spaceborne GPS for Earth Science
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    Chapter 19 TOPEX/Poseidon Precision Orbit Determination With SLR and GPS Anti-Spoofing Data
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    Chapter 20 TOPEX/Poseidon Precision Orbit Determination Using Combined GPS, SLR and DORIS
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    Chapter 21 Observations of TOPEX/POSEIDON Orbit Errors Due to Gravitational and Tidal Modeling Errors Using the Global Positioning System
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    Chapter 22 Preliminary Results from the GPS/MET Atmospheric Remote Sensing Experiment
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    Chapter 23 Initial Results of GPS-LEO Occultation Measurements of Earth’s Atmosphere Obtained with the GPS-MET Experiment
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    Chapter 24 The Laser Retroreflector Experiment on GPS-35 and 36
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    Chapter 25 Kinematic GPS Trends — Equipment, Methodologies and Applications
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    Chapter 26 Kinematic and Rapid Static (KARS) GPS Positioning: Techniques and Recent Experiences
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    Chapter 27 Developments in Airborne ‘High Precision’ Digital Photo Flight Navigation in ‘Realtime’
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    Chapter 28 High Precision Deformation Monitoring Using Differential GPS
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    Chapter 29 Multi-Sensor Arrays for Mapping from Moving Vehicles
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    Chapter 30 Testing of Epoch-by-Epoch Attitude Determination and Ambiguity Resolution in Airborne Mode
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    Chapter 31 Experiences in DGPS/DGLONASS Combination
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    Chapter 32 Precise DGPS Positioning in Marine and Airborne Applications
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    Chapter 33 Developments in Real-Time Precise DGPS Applications: Concepts and Status
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    Chapter 34 A Kinematic GPS Survey at the Northern Part of Kagoshima Bay, Japan
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    Chapter 35 GPS Kinematic Real-Time Applications in Rivers and Train
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    Chapter 36 Testing High-Accuracy, Long-Range Carrier Phase DGPS in Australasia
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    Chapter 37 Using the Global Positioning System to Study the Atmosphere of the Earth: Overview and Prospects
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    Chapter 38 On Atmospheric Effects on GPS Surveying
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    Chapter 39 About the Use of GPS Measurements for Ionospheric Studies
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    Chapter 40 Assessment of Two Methods to Provide Ionospheric Range Error Corrections for Single-Frequency GPS Users
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    Chapter 41 Deriving Ionospheric TEC from GPS Observations
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    Chapter 42 Mitigation of Tropospheric Effects in Local and Regional GPS Networks
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    Chapter 43 GPS as a Location Tool for Electromagnetic Surveys
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    Chapter 44 Size and Shape of L 1 /L 2 Ambiguity Search Space
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    Chapter 45 Integer Ambiguity Estimation with the Lambda Method
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    Chapter 46 The Impact of Ambiguity Resolution on GPS Orbit Determination and on Global Geodynamics Studies
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    Chapter 47 On-the-Fly Ambiguity Resolution for Long Range GPS Kinematic Positioning
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    Chapter 48 GPS Phases: Single Epoch Ambiguity and Slip Resolution
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    Chapter 49 Direct Ambiguity Resolution Using Integer Nonlinear Programming Methods
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    Chapter 50 Alternative Forms of GPS Adjustment Models with Kalman Gain Matrices
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    Chapter 51 Status of the GEOSAT software after ten years of development and testing
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    Chapter 52 Analysis of Data from the VLBI-GPS Collocation Experiment CONT94
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    Chapter 53 A New Software for GPS Data Processing
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    Chapter 54 Low-cost GPS Time Synchronization: The “Totally Accurate Clock”
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    Chapter 55 Characterizations of GPS User Antennas: Reanalysis and New Results
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    Chapter 56 Azimuth- and Elevation-Dependent Phase Center Corrections for Geodetic GPS Antennas Estimated from GPS Calibration Campaigns
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Title
GPS Trends in Precise Terrestrial, Airborne, and Spaceborne Applications
Published by
Springer Berlin Heidelberg, December 2012
DOI 10.1007/978-3-642-80133-4
ISBNs
978-3-54-060872-1, 978-3-64-280133-4
Editors

Beutler, Gerhard, Melbourne, William G., Hein, Günter W., Seeber, Günter

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 3 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
India 1 33%
Unknown 2 67%

Demographic breakdown

Readers by professional status Count As %
Other 1 33%
Student > Ph. D. Student 1 33%
Unspecified 1 33%
Readers by discipline Count As %
Unspecified 1 33%
Earth and Planetary Sciences 1 33%
Medicine and Dentistry 1 33%