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首页> 外文期刊>Advances in space research >Comprehensive outage compensation of real-time orbit and clock corrections with broadcast ephemeris for ambiguity-fixed precise point positioning
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Comprehensive outage compensation of real-time orbit and clock corrections with broadcast ephemeris for ambiguity-fixed precise point positioning

机译:用于植入星历的实时轨道和时钟校正的全面停电补偿,用于模糊 - 固定的精确点定位

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摘要

The main challenge in real-time precise point positioning (PPP) is that the data outages or large time lags in receiving precise orbit and clock corrections greatly degrade the continuity and real-time performance of PPP positioning. To solve this problem, instead of directly predicting orbit and clock corrections in previous researches, this paper presents an alternative approach of generating combined corrections including orbit error, satellite clock and receiver-related error with broadcast ephemeris. Using ambiguities and satellite fractional-cycle biases (FCBs) of previous epoch and the short-term predicted tropospheric delay through linear extrapolation model (LEM), combined corrections at current epoch are retrieved and weighted with multiple reference stations, and further broadcast to user for continuous enhanced positioning during outages of orbit and clock corrections. To validate the proposed method, two reference station network with different inter-station distance from National Geodetic Survey (NGS) network are used for experiments with six different time lags (i.e., 5 s, 10 s, 15 s, 30 s, 45 s and 60 s), and one set of data collected by unmanned aerial vehicle (UAV) is also used. The performance of LEM is investigated, and the troposphere prediction accuracy of low elevation (e.g., 10-20degrees) satellites has been improved by 44.1% to 79.0%. The average accuracy of combined corrections before and after LEM is used is improved by 12.5% to 77.3%. Without LEM, an accuracy of 2-3 cm can be maintained only in case of small time lags, while the accuracies with LEM are all better than 2 cm in case of different time lags. The performance of simulated kinematic PPP at user end is assessed in terms of positioning accuracy and epoch fix rate. In case of different time lags, after LEM is used, the average accuracy in horizontal direction is better than 3 cm, and the accuracy in up direction is better than 5 cm. At the same time, the epoch fix rate has also increased to varying degrees. The results of the UAV data show that in real kinematic environment, the proposed method can still maintain a positioning accuracy of several centimeters in case of 20 s time lag.
机译:实时精确点定位(PPP)中的主要挑战是,在接收精确的轨道和时钟校正时,数据中断或大的时间滞后大大降低了PPP定位的连续性和实时性能。为了解决这个问题,而不是直接预测先前研究中的轨道和时钟校正,而是一种替代方法,可以使用轨道误差,卫星时钟和接收器相关误差与广播星历产生组合校正的替代方法。使用先前时期的模糊和卫星分数周期偏差(FCBS)通过线性外推模型(LEM),通过多个参考站检索和加权电流时代的组合校正,并进一步广播给用户在轨道和时钟校正中的中断期间连续增强定位。为了验证所提出的方法,来自来自国家大地测量(NGS)网络的两个参考站网络具有不同的站点距离,用于六种不同的时间滞后(即5 s,10 s,15 s,30 s,45 s和60秒),也使用由无人机(UAV)收集的一组数据。研究了LEM的性能,低仰角(例如,10-20℃)卫星的对流层预测精度已经提高了44.1%至79.0%。使用之前和之后的合并校正的平均准确性提高了12.5%至77.3%。在没有LEM的情况下,只有在滞后的情况下,只能保持2-3厘米的精度,而在不同的时间滞后,lem的精度均优于2厘米。在定位精度和时期固定速率方面评估了用户端的模拟运动PPP的性能。在不同时间滞后的情况下,在使用lem之后,水平方向的平均精度优于3厘米,并且向上方向的精度优于5厘米。同时,EPOCH固定率也增加到不同程度。 UAV数据的结果显示,在真正的运动环境中,建议的方法仍然可以在20秒的时间滞后保持几厘米的定位精度。

著录项

  • 来源
    《Advances in space research》 |2021年第3期|1124-1142|共19页
  • 作者单位

    School of Transportation Southeast University Nanjing 210096 China;

    School of Instrument Science and Engineering Southeast University. Nanjing 210096 China Key Laboratory of Micro-hertial Instrument and Advanced Navigation Technology Ministry of Education Nanjing 210096 China;

    School of Transportation Southeast University Nanjing 210096 China;

    School of Instrument Science and Engineering Southeast University. Nanjing 210096 China Key Laboratory of Micro-hertial Instrument and Advanced Navigation Technology Ministry of Education Nanjing 210096 China;

    Jiangsu Hydraulic Research Institute Nanjing Jiangsu 210017 China;

    Jiangsu Hydraulic Research Institute Nanjing Jiangsu 210017 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Precise point positioning (PPP); Combined correction; Outage compensation; Broadcast ephemeris; Ambiguity resolution (AR); Linear extrapolation model (LEM);

    机译:精确点定位(PPP);纠正纠正;中断赔偿;广播星历;歧义分辨率(AR);线性推断模型(LEM);

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