Kalman timescale algorithm based on hydrogen clock ensemble

Z. Jiangmiao, Yan Di, Qin Yuhui, Chen Ye, Wu Wenjuan
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Abstract

The selection of timescale algorithm will have a great influence on the accuracy and stability of timescale. To improve the accuracy and stability of timescale, this paper studied the stochastic model of the hydrogen clock and Hadamard deviation for researching the Kalman timescale algorithm based on the hydrogen clock ensemble, which is quite different from the traditional Kalman timescale algorithm based on the model of cesium-beam clock ensemble, mixed ensemble and Allen deviation. The Hadamard variance is used to describe the stability of clock frequency in this paper; it will improve the precision of the Hydrogen Clock Ensemble. By using Hadamard variance instead of Allen avariance, it can overcome the influence of frequency drift. In this paper, the clock whose stability is best is chosen as the reference clock so that the accuracy and stability of the hydrogen clock ensemble will be improved. The experiment data of the hydrogen clock ensemble in the timekeeping laboratory of National Institute of Metrology (NIM) in China were processed; the frequency stability can be improved to 10'15. The results verified that the Kalman timescale algorithm based on the hydrogen clock ensemble is effective.
基于氢时钟集合的卡尔曼时间尺度算法
时间标度算法的选择对时间标度的精度和稳定性有很大的影响。为了提高时间标度的精度和稳定性,本文研究了氢时钟和Hadamard偏差的随机模型,研究了基于氢时钟集合的卡尔曼时间标度算法,该算法与传统的基于铯束时钟集合、混合集合和Allen偏差模型的卡尔曼时间标度算法有很大的不同。本文采用Hadamard方差来描述时钟频率的稳定性;它将提高氢钟集合的精度。利用阿达玛方差代替艾伦方差,克服了频率漂移的影响。本文选择稳定性最好的时钟作为参考时钟,以提高氢钟系综的精度和稳定性。对中国计量科学研究院计时实验室氢钟系的实验数据进行了处理;频率稳定度可提高到10'15。实验结果验证了基于氢时钟集合的卡尔曼时间尺度算法的有效性。
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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