首页> 外文会议>2011 Joint Conference of the IEEE International Frequency Control Symposium European Frequency and Time Forum >BIPM calibration scheme for UTC time links — BIPM pilot expermiment to strenghen Asia-Europe very long baselines
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BIPM calibration scheme for UTC time links — BIPM pilot expermiment to strenghen Asia-Europe very long baselines

机译:UTC时间链接的BIPM校准方案— BIPM试点实验,以加强亚欧非常长的基线

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The calibration uncertainty (uB) is the dominant part in the total uncertainty budget of the UTC generation [1,3]. There are two calibration strategies: (a) Receiver calibration and (b) Time link calibration. The state-of-the-art [1,4,5] of the uB is of order 5 ns for GNSS time transfer based on the strategy (a) and is 1 ns for TWSTFT based on the strategy (b) in which the absolute offset is canceled. In the BIPM Circular T, the uncertainty in UTC-UTC(k) is obtained from the uncertainties in the links [3]. To reduce the uncertainty in UTC-UTC(k), it is optimal to use the calibration strategy (b). Earlier investigations gave theoretical and practical proofs [6–12]. Based on these studies, we propose the BIPM calibration scheme using a calibration system composed of three GNSS geodesic receivers: one is stationary at BIPM and the other two travel between the laboratories. We describe the set-up of the system, the schedule, the uncertainty uB and aging of the uB. The uB is expected to be better than 2 ns for even very long inter-continental UTC baselines.
机译:校准不确定度(u B )是UTC代的总不确定度预算中的主要部分[1,3]。有两种校准策略:(a)接收机校准和(b)时间链路校准。对于基于策略(a)的GNSS时间传输,u B 的最新状态[1,4,5]约为5 ns,对于基于以下(a)的TWSTFT为1 ns取消绝对偏移的策略(b)。在BIPM通告T中,UTC-UTC(k)中的不确定性是从链接中的不确定性获得的[3]。为了减少UTC-UTC(k)中的不确定性,最好使用校准策略(b)。早期的研究给出了理论和实践证明[6-12]。基于这些研究,我们提出了使用由三个GNSS测地接收器组成的校准系统的BIPM校准方案:一个固定在BIPM上,另外两个在实验室之间移动。我们描述了系统的设置,时间表,不确定性u B 和u B 的老化。对于非常长的洲际UTC基线,u B 预计会优于2 ns。

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