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One-Way Time Synchronization via Geostationary Satellites at UHF

机译:通过超高频对地静止卫星进行单向时间同步

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This paper describes an experiment designed to evaluate the accuracy of one-way clock synchronization using geostationary satellites with the propagation delays calculated from the satellite's orbital elements. Propagation delays from a ground transmitter via satellite to each of five locations in the North and South American continents were measured and compared with the calculated values. Three months of data are presented along with descriptions of the equipment, timing signal format, and methods for delay calculation and time recovery. The results show that within two weeks of epoch for the orbital elements, clocks can be synchronized to 150 ??s using the Tactical Communications Satellite (TACSAT). If one of the observers of the timing signals was already synchronized to the master clock, his delay measurement could improve the results for TACSAT to 75 ??s. By the same method and within 12 hours of epoch, the results for the Lincoln Experimental Satellite-6 (LES-6) indicated that synchronization to 25 ??s was possible.
机译:本文介绍了一项旨在评估对地静止卫星单向时钟同步精度的实验,该同步时钟由卫星的轨道元素计算得出。测量了地面发射器通过卫星到北美和南美大陆的五个位置中每个位置的传播延迟,并将其与计算值进行了比较。介绍了三个月的数据,以及对设备,定时信号格式以及延迟计算和时间恢复方法的描述。结果表明,使用战术通信卫星(TACSAT),可以在两个星期的轨道周期内将时钟同步到150 s。如果定时信号的观察者之一已经与主时钟同步,则他的延迟测量可以将TACSAT的结果提高到75 s。通过相同的方法,在短短12个小时内,林肯6号实验卫星(LES-6)的结果表明,同步到25 s是可能的。

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