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Use of software-defined radio receivers in two-way satellite time and frequency transfers for UTC computation

机译:在双向卫星时间和频率传输中使用软件定义的无线电接收器进行UTC计算

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摘要

Two-way satellite time and frequency transfer (TWSTFT) is a primary technique for the generation of coordinated universal time (UTC). About 20 timing laboratories around the world continuously operate TWSTFT using satellite time and ranging equipment (SATRF(19)) modems for remote time and frequency comparisons in this context. The precision of the SATRE TWSTFT as observed today is limited by an apparent daily variation pattern (diurnal) in the TWSTFT results. The observed peak-to-peak variation have been found as high as 2 ns in some cases. Investigations into the origins of the diurnals have so far provided no complete understanding about the cause of the diurnals. One major contributor to the diurnals, however, could be related to properties of the receive part in the modem. In 2014 and 2015, it was demonstrated that bypassing the receive part and the use of software-defined radio (SDR) receivers in TWSTFT ground stations (SDR TWSTFT) instead could considerably reduce both the diurnals and the measurement noise.
机译:双向卫星时间和频率传输(TWSTFT)是生成协调世界时(UTC)的主要技术。世界各地约有20个时序实验室使用卫星时间和测距设备(SATRF(19))调制解调器在此上下文中使用卫星时间和测距设备(SATRF(19))调制解调器。今天观察到的Satre Twstft的精度受到TWSTFT结果中明显的每日变化模式(昼夜)的限制。在某些情况下,观察到的峰 - 峰值变化已经发现高达2ns。迄今为止,对昼夜的起源的调查没有完全了解昼夜原因的完全理解。然而,居民的一个主要贡献者可能与调制解调器中的接收部分的性质有关。 2014年和2015年,证明绕过接收部分和在TWSTFT地站(SDR TWSTFT)中的软件定义的无线电(SDR)接收器的使用,而是可以大大减少昼顶和测量噪声。

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