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GNSS融合动态精密单点定位性能分析 被引量:20

Performance Analysis on Multi-GNSS Kinematic Precise Point Positioning
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摘要 基于武汉大学PANDA软件生成的GPS/GLONASS/BDS/Galileo四系统精密轨道和钟差产品,采用MGEX跟踪站多模观测数据进行试算,对GPS、GPS/BDS、GPS/GLONASS、GLONASS/BDS、GPS/GLONASS/BDS以及GPS/GLONASS/BDS/Galileo 7种模式的动态精密单点定位的精度和收敛性进行比较。结果表明:1)BDS动态PPP收敛速度较慢,收敛后精度能够达到cm级;2)GPS/BDS融合定位北方向分量精度不如GPS单系统定位,但东方向和高程方向分量收敛速度和定位精度都得到改善;GPS/GLONASS和GLONASS/BDS融合定位提高了东方向、北方向和高程方向分量的收敛速度和定位精度;3)GPS/GLONASS/BDS融合定位20min即可收敛,收敛后平面精度优于1cm,高程精度优于3cm;Galileo的引入对收敛速度和定位精度的改善不明显。 Based on the precise orbit and satellite clock corrections products of BDS,GPS,GLONASS and Galileo generated by the PANDA software package of Wuhan University,we analyze the positioning precision and the convergence time of kinematic PPP in 7modes,including BDS-only,GPS-only,combined BDS and GPS,combined BDS and GLONASS,combined GPS and GLONASS,combined BDS,GPS and GLONASS,and combined BDS,GPS,GLONASS and Galileo,by processing data from MGEX.The results illustrate that:1)The convergence speed of BDS kinematic PPP was very slow and the precision could reach the centimeter level after convergence.2)The precision in the north component of GPS/BDS kinematic PPP is worse than that of GPS-only ones but the convergence speed and the positioning precision improves in the East and Up components.The convergence speed and the precision of GPS/GLONASS and GLONASS/BDS kinematic PPP are also improved.3)The precision in the plane and vertical direction can reach 1cm and 3cm after 20 minutes,respectively.The introduction of Galileo satellites hardly changed the convergence time and precision.
出处 《大地测量与地球动力学》 CSCD 北大核心 2016年第4期298-302,共5页 Journal of Geodesy and Geodynamics
基金 国家自然科学基金(41574027 41574030 41374034) 国家863计划(2014AA123101) 国际GNSS监测评估(iGMAS)项目 中央高校基本科研业务费专项(2042014gf026) 湖北省自然科学重点基金(2015CFA057)~~
关键词 动态精密单点定位 GPS/GLONASS/BDS/Galileo 定位精度 收敛速度 kinematic precise point positioning BDS/GPS/GLONASS/Galileo positioning precision convergence speed
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  • 1China Satellite Navigation Office. Beidou Navigation Satel- lite System Signal in Space Interface Control Document ()pen Service Signal BII (Version1.0)[Z] ,2012.
  • 2Steigenberger P, Hugentobler U, Loyer S, et al. Galileo Orbit and Clock Quality of the IGS Multi-GNSS Experiment[J]. Ad- vances in Space Research, 2015, 55(1): 269-281.
  • 3Bruyninx C. Comparing GPS only with GPS+ GLONASS Positioning in a Regional Permanent GNSS Network[J]. GPS Solutions, 2007, 11(1): 97-106.
  • 4Cai C S, Gao Y. Modeling and Assessment of CombinedGPS/GLONASS Precise Point Positionlng[J]. GPS Soluk tions, 2013, 17(2):223 236.
  • 5Li M,Qu L, Zhao Q,et al. Precise Point Positioning with the Beidou Navigation Satellite System[J]. Sensors, 2014, 14(1): 927 943.
  • 6Shi C, Zhao Q, I.i M,et al. Precise Orbit Determination of Beidou Satellites with Precise Positioning[J]. China Sci- ence= Earth Sciences, 2011, 42 (6):854 - 861.
  • 7Shi C, Yi W, Song W, et al. GI.ONASS Pseudorange In- ter Channel Biases and Their Effects on Combined GPS/ GLONASS Precise Point Positioning[J]. GPS Solutions, 2013,17(4):439 451.
  • 8Zhao Q,Guo J,Li M, et al. Initial Results of Precise Orbit and Clock Determination for COMPASS Navigation Satel liteSystem[J]. Journal of Geodesy, 2013, 87(5):475 486.
  • 9ZHOU ShanShi,CAO YueLing,ZHOU JianHua,HU XiaoGong,TANG ChengPan,LIU Li,GUO Rui,HE Feng,CHEN JunPing,WU Bin.Positioning accuracy assessment for the 4GEO/5IGSO/2MEO constellation of COMPASS[J].Science China(Physics,Mechanics & Astronomy),2012,55(12):2290-2299. 被引量:32

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