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Real-Time Determination of a BDS Satellite's Velocity Using the Broadcast Ephemeris

机译:使用广播星历程实时确定BDS卫星的速度

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This paper studies the algorithms for determining a BDS satellite's velocity using the broadcast ephemeri. Firstly, by taking the time derivatives of the Kepler orbit elements and the correction terms, the algorithm comprises close-form analysis formulas and the processing steps for directly computing a BDS satellite's instant velocity using the broadcast ephemeris is derived, and its validity is verified by test. Further, it is discussed on how the size of the differential time step affects the accuracy of the velocity results computed using the position differential algorithm. To investigate the suitable magnitudes of the differential time step, a comprehensive test is performed. In this test, several BDS satellites with different types were specially chosen and the real broadcast ephemeris was used to determine the velocity vectors both by the position differential algorithm and the direct algorithm, and the results were compared. The 12hr comparison test illustrates that the differential time step magnitude suitable for computing a BDS GEO satellite's velocity is 1s and the max residual is less than 0.0001mm/s. The differential time step suitable for a BDS MEO/IGSO Satellite is 100ms and the max residual is less than 0.001mm/s.
机译:本文研究了使用广播星式杂志来确定BDS卫星速度的算法。首先,通过采用开普勒轨道元素的时间衍生物和校正项,算法包括闭合形式分析公式,导出了使用广播星历的直接计算BDS卫星的即时速度的处理步骤,并且其有效性验证测试。此外,讨论差分时间步骤的大小如何影响使用位置差分算法计算的速度结果的精度。为了研究差分时间步骤的合适幅度,执行综合测试。在该测试中,特别选择了几种具有不同类型的BDS卫星,并且使用了真正的广播星历用于通过位置差分算法和直接算法确定速度向量,并进行比较结果。图12HR比较测试说明了适合计算BDS Geo卫星速度的差分时间步长度为1S,最大残余量小于0.0001mm / s。适用于BDS MEO / IGSO卫星的差分时间步长为100ms,最大残余量小于0.001mm / s。

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