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THE FUTURE MODEL OF TA (TL)

机译:TA(TL)的未来模型

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Telecommunication Laboratories (TL, Taiwan) published a local atomic time scale TA (TL) in November, 2004 and uses this time scale and the Circular T monthly report to calibrate a hydrogen maser/micro-phase-stepper system to be the local coordinated time scale UTC (TL). The TA (TL) is based on an ensemble of 7-9 high-performance Agilent-5071A cesium clocks. The weight of each clock was set to be proportional to the inverse exponential with the index of each clock's frequency deviation. We removed the long-term frequency drift of each clock and then weighted the residual fluctuations, in order that the frequency drift of our time scale not change too rapidly when we add or remove one clock from the ensemble. A mechanism was also developed to convert the virtual paper clock into physical output. Through this mechanism, the phase difference between the paper clock and the physical output can always be kept to within 250 picoseconds. The stability of TA (TL) is about 3 × 10 -15 (τ = 30 days vs. UTC); here, the average stability of the cesium clocks in ensemble is about 1 × 10 -14 . We estimate this time scale to have an accuracy of 10 ns/month, and it's quite good enough to be TL's local coordinated time scale, UTC (TL).
机译:电信实验室(TL,台湾)于2004年11月发布了一份当地原子时间尺度TA(TL),并使用此时间尺度和通函T月度报告,以校准氢气波纹/微相步进系统作为当地协调的时间尺寸UTC(TL)。 TA(TL)基于7-9个高性能Agilent-5071A铯钟的集合。每个时钟的重量被设置为与每个时钟频率偏差的索引的逆指数成比例。我们删除了每个时钟的长期频率漂移,然后加权剩余波动,以使我们的时间尺度的频率漂移在从集合中添加或删除一个时钟时不会太快地改变。还开发了一种机制来将虚拟纸张时钟转换为物理输出。通过这种机制,纸张时钟和物理输出之间的相位差总是可以保持在250皮秒内。 Ta(T1)的稳定性约为3×10 -15(τ= 30天与UTC);这里,集合中铯钟的平均稳定性约为1×10 -14。我们估计这一时间尺度尺寸为10 ns /月,并且它足以成为TL的本地协调时间尺度UTC(TL)。

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