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New trends in two-way time and frequency transfer via satellite

机译:通过卫星双向时间和频率传输的新趋势

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Recent developments performed with SATRE two-way time transfer (TWSTFT) modems resulted in significant performance upgrades and operational improvements of the TWSTFT method. These are aimed to reduce manpower effort and to provide reliable, real-time data via a centralized monitoring and control facility, which can be easily integrated into larger systems or ground-station installations. New operational modes and advanced modulation techniques are aimed to significantly reduce transponder and other operational costs. Clock performance requirements at secondary sites can be significantly reduced as soon as two-way links operate on frequent schedule. The results of a two-week test campaign to evaluate frequency transfer using carrier phase between USNO and NIST are presented. This technique opens another upgrade path exhibiting improved performance from 2-way links via satellite. A precision of 2 ps for a 1-second integration time has been achieved via two different, standard communication satellites. The initial frequency-transfer accuracy is on the order of 5E-14 for a 30 min observation time period. The frequency transfer stability approaches 1E-14 for a 100 s integration interval. Further tests are planned to extend the characterization to longer time periods. Remote control via Internet and centralized data collection have been used throughout the experiment.
机译:通过SATRE双向时间转移(TWSTFT)调制解调器进行了最新的发展导致了显着的性能升级和TWSTFT方法的运行改进。这些旨在减少人力努力,并通过集中监控设施提供可靠的实时数据,这可以轻松集成到更大的系统或地面安装中。新的操作模式和先进的调制技术旨在显着降低应答器和其他操作成本。一旦双向链路在频繁的时间表上运行,就可以显着减少辅助站点的时钟性能要求。提出了两周的测试运动,以评估使用USNO和NIST之间的载波阶段进行频率传输的结果。该技术打开另一个升级路径,通过卫星从双向链路中表现出改进的性能。通过两种不同的标准通信卫星实现了1秒集成时间的2 PS的精度。初始频率转移精度约为5E-14,可在30分钟观察时间段内。频率传递稳定性接近100秒的集成间隔的1E-14。计划进一步测试将表征扩展到更长的时间段。在整个实验中使用了通过Internet和集中数据收集的遥控器。

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