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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >First international two-way satellite time and frequency transfer experiment employing dual pseudo-random noise codes
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First international two-way satellite time and frequency transfer experiment employing dual pseudo-random noise codes

机译:第一个使用双伪随机噪声码的国际双向卫星时间和频率转换实验

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Two-way satellite time and frequency transfer (TWSTFT) is one of the main techniques used to compare atomic time scales over long distances. To both improve the precision of TWSTFT and decrease the satellite link fee, a new software-defined modem with dual pseudo-random noise (DPN) codes has been developed. In this paper, we demonstrate the first international DPN-based TWSTFT experiment over a period of 6 months. The results of DPN exhibit excellent performance, which is competitive with the Global Positioning System (GPS) precise point positioning (PPP) technique in the short-term and consistent with the conventional TWSTFT in the long-term. Time deviations of less than 75 ps are achieved for averaging times from 1 s to 1 d. Moreover, the DPN data has less diurnal variation than that of the conventional TWSTFT. Because the DPN-based system has advantages of higher precision and lower bandwidth cost, it is one of the most promising methods to improve international time-transfer links.
机译:双向卫星时间和频率传输(TWSTFT)是用于比较长距离原子时标的主要技术之一。为了提高TWSTFT的精度并降低卫星链路费用,已经开发了一种新的软件定义的具有双伪随机噪声(DPN)码的调制解调器。在本文中,我们演示了为期6个月的第一个基于DPN的国际性TWSTFT实验。 DPN的结果显示出优异的性能,在短期内可与全球定位系统(GPS)精确点定位(PPP)技术相媲美,而在长期内可与常规TWSTFT保持一致。对于1 s至1 d的平均时间,可实现小于75 ps的时间偏差。此外,与传统的TWSTFT相比,DPN数据的日变化较小。由于基于DPN的系统具有较高的精度和较低的带宽成本,因此它是改善国际时间传输链路的最有前途的方法之一。

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