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PERFORMANCE ANALYSIS OF INTEGRATED GPS/GLONASS CARRIER PHASE-BASED POSITIONING
引用本文:DAI LiwenHAN ShaoweiChris Rizos. PERFORMANCE ANALYSIS OF INTEGRATED GPS/GLONASS CARRIER PHASE-BASED POSITIONING[J]. 地球空间信息科学学报, 2001, 4(4): 9-18. DOI: 10.1007/BF02826572
作者姓名:DAI LiwenHAN ShaoweiChris Rizos
作者单位:DAI Liwen,Ph.D candidate,School of Geomatic Engineering,the University of New So uth Wales,Sydney NSW 2052,Australia  
基金项目:theInternationalPostgraduateResearchScholarship
摘    要:1 IntroductionReal_timekinematicGPSprecisepositioninghasbeenplayinganincreasingroleinbothsurveyingandnavigation ,andhasbecomeanessentialtoolforpreciserelativepositioning .However,reliableandcorrectambiguityresolutiondependsonobserva tionsuponalargenumbe…

收稿时间:2012-02-13

Performance analysis of integrated GPS/GLONASS carrier phase-based positioning
Dai Liwen Ph. D candidate,Han Shaowei,Chris Rizos. Performance analysis of integrated GPS/GLONASS carrier phase-based positioning[J]. Geo-Spatial Information Science, 2001, 4(4): 9-18. DOI: 10.1007/BF02826572
Authors:Dai Liwen Ph. D candidate  Han Shaowei  Chris Rizos
Affiliation:DAI LiwenHAN ShaoweiChris Rizos
Abstract:Due to the different signal frequencies for the GLONASS satellites,the commonly-used double-differencing procedure for carrier phase data processing can not be implemented in its straightforward form,as in the case of GPS.In this paper a novel data processing strategy,involving a three-step procedure,for integrated GPS/GLONASS positioning is proposed.The first is pseudo-range-based positioning,that uses double-differenced (DD) GPS pseudo-range and single-differenced (SD) GLONASS pseudo-range measurements to derive the initial position and receiver clock bias.The second is forming DD measurements (expressed in cycles) in order to estimate the ambiguities,by using the receiver clock bias estimated in the above step.The third is to form DD measurements (expressed in metric units) with the unknown SD integer ambiguity for the GLONASS reference satellite as the only parameter (which is constant before a cycle slip occurs for this satellite).A real-time stochastic model estimated by residual series over previous epochs is proposed for integrated GPS/GLONASS carrier phase and pseudo-range data processing.Other associated issues,such as cycle slip detection,validation criteria and adaptive procedure(s) for ambiguity resolution,is also discussed.The performance of this data processing strategy will be demonstrated through case study examples of rapid static positioning and kinematic positioning.From four experiments carried out to date,the results indicate that rapid static positioning requires 1 minute of single frequency GPS/GLONASS data for 100% positioning success rate.The single epoch positioning solution for kinematic positioning can achieve 94.6% success rate over short baselines (<6 km).
Keywords:GPS/ GLONASS  stochastic model  functional model  ambiguity resolution
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