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Chapter 38 Research Progress on TWSTFT Mobile Calibration Station

机译:第38章TWSTFT移动校准站的研究进展

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To achieve more precision calibration between two any signal system' ground stations of two-way satellite time and frequency transfer (TWSTFT), a new TWSTFT calibration method is proposed based on two TWSTFT mobile stations to calibrate systematic error of time comparison between any two ground stations. Two TWSTFT mobile stations are developed. To measure the systemic error between the two mobile stations, a zero baseline comparison experiment is designed. The standard deviation of equipment delay of two mobile stations are respective 0.102, 0.038 ns. The standard deviation of systematic error of zero baseline comparison is 0.124 ns. To validate function of two mobile stations, a long baseline comparison experiment is designed between two ground stations at Tianjin and Lintong. The result is highly consistent with GPS Common-View comparison between two stations. To farther validate performance of two mobile stations, a long baseline comparison experiment be designed between two ground stations at Changchun and Lintong. The result is shown that the standard deviation of clock difference of two ground stations is 0.347 ns after moving the drift of cesium atomic clock at Changchun. The two TWSTFT mobile stations can implement calibration of systematic error of time comparison between any two ground stations.
机译:为了在双向卫星时间和频率转换(TWSTFT)的两个任意信号系统的地面站之间实现更精确的校准,提出了一种基于两个TWSTFT移动站的新的TWSTFT校准方法,以校准任意两个地面之间的时间比较的系统误差站。开发了两个TWSTFT移动站。为了测量两个移动台之间的系统误差,设计了零基线比较实验。两个移动台设备延迟的标准偏差分别为0.102、0.038 ns。零基线比较的系统误差的标准偏差为0.124 ns。为了验证两个移动站的功能,在天津和临tong的两个地面站之间设计了一个较长的基线比较实验。结果与两个站点之间的GPS公共视图比较高度一致。为了进一步验证两个移动站的性能,在长春和临tong的两个地面站之间设计了一个较长的基线比较实验。结果表明,移动长春铯原子钟的漂移后,两个地面站时钟差的标准偏差为0.347 ns。两个TWSTFT移动站可以实现任何两个地面站之间时间比较的系统误差的校准。

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