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Undifferenced GPS Ambiguity Resolution Using the Decoupled Clock Model and Ambiguity Datum Fixing

机译:使用解耦时钟模型和模糊度基准固定的未差分GPS模糊度解析

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摘要

This paper describes a method of processing Global Positioning System (GPS) observations to achieve undifferenced ambiguity resolution. Dual-frequency carrier phase and pseudorange measurements are processed by specifying separate oscillator parameters for the carrier phase and pseudorange measurements. Carrier phase estimates of the oscillator errors are arbitrarily biased with respect to the pseudorange estimates, and ambiguity parameters are constrained to be integer-valued. A network solution is necessary to compute the satellite code and phase clocks required as fixed parameters in single-user Precise Point Positioning (PPP) solutions. In the PPP results presented here, the LAMBDA method was used to optimally resolve ambiguities at each epoch. Only a small improvement in position error is gained with 5-minute static processing over 24 hours. However, there is a significant reduction in convergence time, and with 30-second static processing after 60 minutes, 90% of solutions approach 2 cm horizontal error, compared to 10 cm for standard PPP.
机译:本文介绍了一种处理全球定位系统(GPS)观测值以实现无歧义歧义分辨率的方法。通过为载波相位和伪距测量指定单独的振荡器参数,可以处理双频载波相位和伪距测量。相对于伪距估计,振荡器误差的载波相位估计被任意地偏置,并且模糊性参数被约束为整数值。需要一种网络解决方案来计算单用户精确点定位(PPP)解决方案中作为固定参数所需的卫星代码和相位时钟。在此处介绍的PPP结果中,LAMBDA方法用于最佳地解决每个时期的歧义。在24小时内进行5分钟的静态处理后,只能获得很小的位置误差改善。但是,收敛时间显着减少,并且在60分钟后进行30秒的静态处理后,与标准PPP的10 cm相比,90%的溶液接近2 cm的水平误差。

著录项

  • 来源
    《Navigation》 |2010年第2期|P.123-135|共13页
  • 作者单位

    York University, Toronto, Ontario, Canada, M3J 1P3 Natural Resources Canada, Ottawa, Ontario, Canada, K1A 0E9;

    rnYork University, Toronto, Ontario, Canada, M3J 1P3;

    rnNatural Resources Canada, Ottawa, Ontario, Canada, K1A 0E9;

    rnNatural Resources Canada, Ottawa, Ontario, Canada, K1A 0E9;

  • 收录信息 美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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