Determination of Mathematical Expectations of Two Weighting Statistics for Ensemble Time Scales

IF 2.1 3区 工程技术 Q2 INSTRUMENTS & INSTRUMENTATION Metrologia Pub Date : 2023-10-31 DOI:10.1088/1681-7575/ad02a0
Yiwei Wu, Siran Liu
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Abstract

Abstract The Bureau International des Poids et Mesures uses the ALGOS algorithm to generate the Echelle Atomique Libre. The original and new ALGOS weighting algorithms employ two different statistics to calculate the weights, resulting in different experimental phenomena. These two statistics are believed to be the keys to analyzing these experimental phenomena, because the statistical characteristics (e.g. the mathematical expectations and variances) of the statistics completely determine the statistical characteristics of the weights, and subsequently the experimental phenomena. The core work conducted in this study is to derive the analytical expressions of the mathematical expectations of these two statistics under ideal conditions and to validate them empirically. This paper provides a theoretical analysis of these expressions and discusses the relationships between them and the mathematical expectations of the Allan variances. These expressions theoretically reveal the reasons behind the experimental phenomena, especially why hydrogen masers are assigned lower weights in the original ALGOS weighting algorithm but higher weights in the new one. According to the derivation process, these analytical expressions are universally applicable and can also be applied to time-keeping laboratories. In the future, this work can be extended to determine the theoretical statistic and weight performances of different types of frequency standards quantitatively for time-keeping laboratories under both ideal and non-ideal conditions, providing a theoretical basis for improving the design of ensemble time scale algorithms. In the appendix, a method of obtaining the experimental variances and probability density functions (PDFs) of these two statistics is additionally proposed. The two-sample Kolmogorov–Smirnov test is presented to compare the experimental and theoretical PDFs of an example.
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集合时间尺度两加权统计量数学期望的确定
摘要:国际测量局使用ALGOS算法生成了自由梯队原子。原算法和新算法采用两种不同的统计量来计算权重,从而导致不同的实验现象。这两个统计量被认为是分析这些实验现象的关键,因为统计量的统计特征(如数学期望和方差)完全决定了权重的统计特征,进而决定了实验现象。本研究的核心工作是推导出这两个统计量在理想条件下的数学期望的解析表达式,并对其进行实证验证。本文对这些表达式进行了理论分析,并讨论了它们与Allan方差的数学期望之间的关系。这些表达式从理论上揭示了实验现象背后的原因,特别是为什么氢脉泽在原ALGOS加权算法中权重较低,而在新算法中权重较高。由推导过程可知,这些解析式是普遍适用的,也可应用于计时实验室。未来,本工作可扩展到定量确定理想和非理想条件下计时实验室不同类型频率标准的理论统计性能和权重性能,为改进集合时间尺度算法的设计提供理论依据。在附录中,还提出了一种获得这两种统计量的实验方差和概率密度函数的方法。提出了双样本Kolmogorov-Smirnov检验来比较一个例子的实验pdf和理论pdf。
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来源期刊
Metrologia
Metrologia 工程技术-物理:应用
CiteScore
2.80
自引率
25.00%
发文量
137
审稿时长
12 months
期刊介绍: Published 6 times per year, Metrologia covers the fundamentals of measurements, particularly those dealing with the seven base units of the International System of Units (metre, kilogram, second, ampere, kelvin, candela, mole) or proposals to replace them. The journal also publishes papers that contribute to the solution of difficult measurement problems and improve the accuracy of derived units and constants that are of fundamental importance to physics. In addition to regular papers, the journal publishes review articles, issues devoted to single topics of timely interest and occasional conference proceedings. Letters to the Editor and Short Communications (generally three pages or less) are also considered.
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