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Studies on Algorithm of High-Accuracy Intersatellite Clock Offset Measurement

机译:高精度星际时钟偏移量测量算法研究

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Intersatellite clock offset measurement is one of the key techniques to implement intersatellite time synchronization. Two-way time transfer is one of the methods with the high-accuracy applied to clock offset measurement. Since satellite moves at high speeds, the propagation delay of two-way time transfer signals between moving satellites is not equal. Therefore, the clock offset obtained with this method does not equal the actual clock offset. On the basis of two-way satellite time transfer algorithm, a situation of two-way time transfer between moving satellites is considered. The impact of the motions of satellite on the propagation delay of two-way time transfer signals in this situation is discussed. The characteristics of the propagation delay of two-way time transfer signals between moving satellites varying with the intersatellite range are analyzed, and the rule of the intersatellite clock offset varying with the intersatellite range obtained with this algorithm is deduced. This paper presents a new dynamic two-way intersatellite clock offset measurement algorithm (DTWICOMA) with which high-accuracy intersatellite clock offset is measured through the combination of intersatellite pseudo-range polynomial fitting and clock-offset polynomial fitting. Simulation data of satellites showed that with the algorithm the intersatellite clock offset error can be controlled within 5ns. As a result the DTWICOMA can be used for high-accuracy intersatellite clock offset measurement between moving satellites.
机译:卫星间时钟偏移测量是实现卫星间时间同步的关键技术之一。双向时间传输是将高精度应用于时钟偏移量测量的方法之一。由于卫星高速移动,因此在移动的卫星之间双向时间传输信号的传播延迟是不相等的。因此,用这种方法获得的时钟偏移量不等于实际时钟偏移量。基于双向卫星时间传递算法,考虑了移动卫星之间双向时间传递的情况。在这种情况下,讨论了卫星运动对双向时间传输信号传播延迟的影响。分析了随卫星星际距离变化的移动卫星之间双向时间传输信号的传播延迟特性,推导了该算法获得的星际时钟偏移随星际距离变化的规律。本文提出了一种新的动态双向星际时钟偏移测量算法(DTWICOMA),该算法通过结合星际伪距多项式拟合和时偏多项式拟合来测量高精度星际时钟偏移。卫星仿真数据表明,该算法可以将卫星间时钟偏移误差控制在5ns以内。结果,DTWICOMA可用于在移动卫星之间进行高精度的星际时钟偏移测量。

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