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Open AccessJournal Article

Global Positioning System : Theory and Applications I

B. W. Parkinson
- 01 Jan 1996 - 
- Vol. 163, pp 3-55
TLDR
Differential GPS and Integrity Monitoring differential GPS Pseudolites Wide Area Differential GPS Wide Area Augmentation System Receiver Autonomous Integrity Monitoring Integrated Navigation Systems Integration of GPS and Loran-C GPS and Inertial Integration Receiver Aut autonomous Integrity Monitoring Availability for GPS Augmented with Barometric Altimeter Aiding and Clock Coasting
Abstract
Differential GPS and Integrity Monitoring Differential GPS Pseudolites Wide Area Differential GPS Wide Area Augmentation System Receiver Autonomous Integrity Monitoring Integrated Navigation Systems Integration of GPS and Loran-C GPS and Inertial Integration Receiver Autonomous Integrity Monitoring Availability for GPS Augmented with Barometric Altimeter Aiding and Clock Coasting GPS and Global Navigation Satellite System (GLONASS) GPS Navigation Applications Land Vehicle Navigation and Tracking Marine Applications Applications of the GPS to Air Traffic Control GPS Applications in General Aviation Aircraft Automatic Approach and Landing Using GPS Precision Landing of Aircraft Using Integrity Beacons Spacecraft Attitude Control Using GPS Carrier Phase Special Applications GPS for Precise Time and Time Interval Measurement Surveying with the Global Position System Attitude Determination Geodesy Orbit Determination Test Range Instrumentation.

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Citations
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Cache invalidation strategies for internet-based mobile ad hoc networks

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Suppression of Pulsed Interference through Blanking

TL;DR: The impact of pulsed interference on GPS user equipment is described and the results of simulation and hardware tests that were conducted this year to validate the assumed performance of L5 user equipment with blanking are presented.
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Performance Evaluation of Single-frequency Precise Point Positioning with GPS, GLONASS, BeiDou and Galileo

TL;DR: A FCSF-PPP model is presented to simultaneously process observations from all four GNSS constellations and the results indicate that the positioning performance is significantly improved by integrating multi-constellation signals.

Extended Kalman Filter-Based Tracking of Weak GPS Signals under High Dynamic Conditions

TL;DR: These algorithms are demonstrated using simulated GPS C/A code signals, and TCXO clocks, and have shown their ability to work with signals having a Doppler rate over 300 Hz/sec, and with power as low as 15 dB-Hz.
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Precise, three-dimensional seafloor geodetic deformation measurements using difference techniques

TL;DR: In this paper, the authors developed new data processing strategies for quantifying crustal deformation at the ocean floor: single-and double-difference methods, which are able to almost completely eliminate all depthdependent and spatialdependent systematic errors.
References
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Wide Area Differential GPS

TL;DR: Simulation results indicate that normal GPS positioning errors can potentially be reduced by more than 95% using WADGPS.

Ephemeris and Clock Navigation Message Accuracy

J. Zumberge, +1 more
TL;DR: The accuracy of the ephemeris and clock corrections contained in the GPS navigation message is discussed.

GPS and Inertial Integration

TL;DR: This chapter devotes one section to address each of the following questions: how complex are the integration algorithms required to provide the desired level of performance, with options for growth to meet future requirements?

Test Range Instrumentation

TL;DR: In the early 1970s, laser trackers became available to support test activities as discussed by the authors, and a combination of radar, distance-measuring equipment (DME), optical trackers such as cinetheodolites, and other miscellaneous instrumentation to provide time-space position information (TSPI) to satisfy test platform positioning requirements.