首页> 外文会议>Frequency Control Symposium, 2009 Joint with the 22nd European Frequency and Time forum >Concept for an accurate calibration of long baseline two-way satellite time and frequency transfer (TWSTFT) links via two separated transponders on one telecommunication satellite
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Concept for an accurate calibration of long baseline two-way satellite time and frequency transfer (TWSTFT) links via two separated transponders on one telecommunication satellite

机译:通过一个电信卫星上的两个分离的转发器对长基线双向卫星时间和频率传输(TWSTFT)链路进行精确校准的概念

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Two-way satellite time and frequency transfer (TWSTFT) is the technique which allows time scale comparisons at the nanosecond level. Until now, this uncertainty level is restricted to those institutes which both can exchange signals through the same single transponder of one telecommunication satellite. Only in this case the calibration scheme of circulating a portable TWSTFT reference station is applicable. This condition is not fulfilled in the operational intercontinental links, e.g. between Asia and Europe. Calibration of the TWSTFT link is in such cases achieved by adjusting the TWSTFT results to those obtained with a calibrated GPS link. The uncertainty is then limited by the uncertainty of the GPS link, which is commonly estimated to be at the level muB = 5 ns. We propose an experimental configuration which allows determination of all important delay differences in a long baseline link including the differential delays between the operational ground stations as well as the differential transponder delay between the two separated transponders used on the satellite. The latter has never been determined on a flying satellite. We propose to exchange two portable TWSTFT stations and two GPS receivers between the two ground stations to be calibrated. We estimate the overall uncertainty for the calibration to be at a level of 2 ns. We also discuss briefly the ability of calibrating a TWSTFT link as a whole by means of GPS on the same level of uncertainty.
机译:双向卫星时间和频率传输(TWSTFT)是一种允许在纳秒级进行时标比较的技术。到目前为止,这种不确定性水平仅限于两个机构都可以通过一个电信卫星的同一单个转发器交换信号。仅在这种情况下,循环便携式TWSTFT参考站的校准方案才适用。在运营的洲际链接(例如,在亚洲和欧洲之间。在这种情况下,通过将TWSTFT结果调整为使用已校准的GPS链路获得的结果来实现TWSTFT链路的校准。然后,不确定性受限于GPS链路的不确定性,通常将其估计为mu B = 5 ns。我们提出了一种实验配置,该配置允许确定长基线链路中所有重要的延迟差异,包括工作地面站之间的差分延迟以及卫星上使用的两个分离的转发器之间的差分转发器延迟。后者从未在飞行的卫星上确定。我们建议在两个要校准的地面站之间交换两个便携式TWSTFT站和两个GPS接收器。我们估计校准的总不确定度为2 ns。我们还将简要讨论在相同的不确定性水平上通过GPS校准整个TWSTFT链路的能力。

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