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Evaluating the Effect of Global Positioning System (GPS) Satellite Clock Error via GPS Simulation

机译:通过GPS仿真评估全球定位系统(GPS)卫星时钟误差的影响

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摘要

This study is aimed at evaluating the effect of Global Positioning System (GPS) satellite clock error using GPS simulation. Two conditions of tests are used; Case 1: All the GPS satellites have clock errors within the normal range of 0 to 7 ns, corresponding to pseudorange error range of 0 to 2.1 m; Case 2: One GPS satellite suffers from critical failure, resulting in clock error in the pseudorange of up to 1 km. It is found that increase of GPS satellite clock error causes increase of average positional error due to increase of pseudorange error in the GPS satellite signals, which results in increasing error in the coordinates computed by the GPS receiver. Varying average positional error patterns are observed for the each of the readings. This is due to the GPS satellite constellation being dynamic, causing varying GPS satellite geometry over location and time, resulting in GPS accuracy being location/time dependent. For Case 1, in general, the highest average positional error values are observed for readings with the highest PDOP values, while the lowest average positional error values are observed for readings with the lowest PDOP values. For Case 2, no correlation is observed between the average positional error values and PDOP, indicating that the error generated is random.
机译:本研究旨在评估使用GPS仿真的全球定位系统(GPS)卫星时钟误差的影响。使用两个测试条件;案例1:所有GPS卫星在0到7 ns的正常范围内具有时钟误差,对应于0至2.1 m的伪奇误差范围;案例2:一个GPS卫星患有临界失败,导致伪距的时钟误差高达1公里。结果发现GPS卫星时钟误差的增加导致GPS卫星信号中伪奇误差的增加导致平均位置误差的增加,这导致GPS接收器计算的坐标中的误差增加。对于每个读数,观察到不同的平均位置误差模式。这是由于GPS卫星星座是动态的,导致在位置和时间上变化的GPS卫星几何形状,导致GPS精度依赖于位置/时间。对于案例1,通常,观察到具有最高PDOP值的读数的最高平均位置误差值,而最低平均位置误差值被观察到具有最低PDOP值的读数。对于案例2,在平均位置误差值和PDOP之间没有观察到相关性,表明生成的错误是随机的。

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