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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >The BNM-LPTF software for the frequency comparison of atomic clocks by the carrier phase of the GPS signal
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The BNM-LPTF software for the frequency comparison of atomic clocks by the carrier phase of the GPS signal

机译:BNM-LPTF软件用于通过GPS信号的载波相位对原子钟进行频率比较

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This paper describes the software and equipment used at the Laboratoire Primaire du Temps et des Frequences du Bureau National de Metrologie (BNM-LPTF), Paris, France. Two H-masers in short baseline, one located at the BNM-LPTF and the other at the Laboratoire de l'Horloge Atomique du Centre National de la Recherche Scientifique (CNRS-LHA), Orsay, France, were computed in parallel with the BNM-LPTF software and with the BERNESE V 4.1 software. The comparison of the results issued from both computations shows an agreement within 100 ps (1 /spl sigma/). In addition, comparisons with the BNM-LPTF software were made over 10 days with the H-masers located at the Physikalisch-Technische Bundesanstalt (PTB), Braunschweig, Germany, and another at the National Physical Laboratory (NPL), Teddington, United Kingdom. The data collected show that a modulation with an amplitude of 50 ps and a period of 700-800 ps affects the equipment of the NPL. In addition, these comparisons show that the noise of the instruments together with the environmental conditions at the PTB was higher than that of the NPL and the BNM-LPTF during the observation period. The best relative frequency stability obtained, in the BNM-LPTF/NPL comparison, is about 3/spl times/10/sup -15/ for averaging periods between 6/spl times/10/sup 4/ s and 3/spl times/10/sup 5/ s. This result is in good agreement with the expected stability of H-masers. It demonstrates that the noise brought by the GPS carrier phase measurements can be averaged out at this level.
机译:本文介绍了在法国巴黎国家计量局(BNM-LPTF)的Primaire du Temps et des Frequences实验室使用的软件和设备。与法国国家银行同时计算了两个基线较短的H-masers,一个位于BNM-LPTF上,另一个位于法国奥赛国家科学中心实验室(CNRS-LHA)。 -LPTF软件以及BERNESE V 4.1软件。对两个计算结果的比较表明,一致性在100 ps(1 / spl sigma /)之内。此外,与BNM-LPTF软件的比较在10天之内与位于德国不伦瑞克的Physikalisch-Technische Bundesanstalt(PTB)和位于英国Teddington的国家物理实验室(NPL)的H-masers进行了比较。 。收集的数据表明,幅度为50 ps且周期为700-800 ps的调制会影响NPL的设备。另外,这些比较表明,在观测期间,仪器的噪声以及PTB的环境条件要高于NPL和BNM-LPTF。在BNM-LPTF / NPL比较中,获得的最佳相对频率稳定性约为3 / spl次/ 10 / sup -15 /,平均周期为6 / spl次/ 10 / sup 4 / s至3 / spl次/ 10 / sup 5 / s。该结果与H-masers的预期稳定性高度吻合。它表明,GPS载波相位测量所带来的噪声可以在此水平上平均。

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