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Delay analysis of two way time transfer based on troposphere gradients

机译:基于对流层梯度的双向时间传递时延分析

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It analyzed three troposphere mapping functions, Niell Mapping Function (NMF), Vienna Mapping Function 1 (VMF1) and Global Mapping Function (GMF), and its parameters selection and characteristics paralleled. Also it presented the thumb rule in troposphere mapping function and designed a two way time transfer method based on troposphere mapping functions. Besides it studied the station height errors based on troposphere gradients. It analyzed the above methods in four GPS stations in mid latitude northeast Asian areas. It could conclude from the studies that the station height errors distribute in cosine distribution with a yearly period and the maximum and minimum display in ad-jacency of summer & autumn and winter & spring. The chosen stations' height errors are in mm precision. And the station height errors increase with the two way transfer distance's length.
机译:它分析了三个对流层映射函数,即尼尔映射函数(NMF),维也纳映射函数1(VMF1)和全局映射函数(GMF),并对其参数选择和特性进行了并行处理。提出了对流层映射函数的拇指法则,并设计了一种基于对流层映射函数的双向时间传递方法。此外,它还研究了基于对流层梯度的台站高度误差。分析了东北亚中纬度地区的四个GPS站的上述方法。从研究中可以得出结论,站高误差以每年的余弦分布分布,并且在夏,秋,冬,春的邻接处最大和最小显示。所选测站的高度误差以毫米为单位。并且站点高度误差随着双向传输距离的长度而增加。

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