Digital Frequency Detecting Device for Mobile Methane Frequency Standard

D. Shelestov, D. A. Tyurikov, A. Pnev, M. Gubin
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Abstract

. Utilization of methane optical frequency standard is promising for precision frequency measurements, in particular, it is a possible future mobile (and on-board) frequency standard with stability of 5 · 10 − 15 –5 · 10 − 16 , which will be used in frequency-time segment of GNS GLONASS. This paper deals with development of a digital frequency detector, designed to increase the methane standard short-term frequency stability. Accuracy of digital frequency counting algorithms is calculated. A numerical simulation of programmable logic device operation is conducted, which confirms the operability of a single channel synchronous-frequency detector with Allan variance of 1,4 · 10 − 13 per 1 s, and also provides a technology to increase the accuracy of the counting, allowing one to measure the Allan variance at 5,6 · 10 − 16 per 1 s.
移动式甲烷频率标准数字频率检测装置
. 利用甲烷光频标进行精确频率测量是有希望的,特别是它是未来可能的移动(和车载)频标,稳定性为5·10−15 -5·10−16,将用于GNS GLONASS的频率-时间段。本文介绍了一种数字式频率检测器的研制,旨在提高甲烷标准的短期频率稳定性。对数字频率计数算法的精度进行了计算。对可编程逻辑器件操作进行了数值模拟,证实了单通道同步频率检测器的可操作性,其艾伦方差为每1秒1,4·10−13,并且还提供了一种提高计数精度的技术,允许人们以每1秒5,6·10−16测量艾伦方差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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