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Higher-Order Allan Variance for Frequency Stability Evaluation of Multi-Dimensional Atomic Clocks

Publication ,  Journal Article
Ichimura, T; Kawaguchi, T; Yano, Y; Hanado, Y; Ishizaki, T
Published in: Ieej Transactions on Electronics Information and Systems
January 1, 2023

In this paper, we analyze a generalized version of the Allan variance, referred to as a higher-order Allan variance, that can evaluate the frequency stability of multi-dimensional atomic clocks as a function of the measurement interval. It is known that the standard Allan variance, a measure to evaluate the frequency stability of atomic clocks, has a concern that its value for third-order atomic clocks, such as hydrogen maser, is dependent not only on the sampling interval of measurement data, but also on the time of measurement. To resolve this issue, this paper introduces the higher-order Allan variance defined for the higher-order difference of clock reading deviations. The main contribution of this paper is to mathematically prove that the higher-order Allan variance depends only on the sampling interval of clock reading deviations, for which a sufficiently high order of difference is considered. Furthermore, we present numerical simulation studying the numerical stability of the higher-order Allan variance computation for time series data of clock reading deviations.

Duke Scholars

Published In

Ieej Transactions on Electronics Information and Systems

DOI

EISSN

1348-8155

ISSN

0385-4221

Publication Date

January 1, 2023

Volume

143

Issue

10

Start / End Page

1017 / 1024

Related Subject Headings

  • Electrical & Electronic Engineering
 

Citation

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ICMJE
MLA
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Ichimura, T., Kawaguchi, T., Yano, Y., Hanado, Y., & Ishizaki, T. (2023). Higher-Order Allan Variance for Frequency Stability Evaluation of Multi-Dimensional Atomic Clocks. Ieej Transactions on Electronics Information and Systems, 143(10), 1017–1024. https://doi.org/10.1541/ieejeiss.143.1017
Ichimura, T., T. Kawaguchi, Y. Yano, Y. Hanado, and T. Ishizaki. “Higher-Order Allan Variance for Frequency Stability Evaluation of Multi-Dimensional Atomic Clocks.” Ieej Transactions on Electronics Information and Systems 143, no. 10 (January 1, 2023): 1017–24. https://doi.org/10.1541/ieejeiss.143.1017.
Ichimura T, Kawaguchi T, Yano Y, Hanado Y, Ishizaki T. Higher-Order Allan Variance for Frequency Stability Evaluation of Multi-Dimensional Atomic Clocks. Ieej Transactions on Electronics Information and Systems. 2023 Jan 1;143(10):1017–24.
Ichimura, T., et al. “Higher-Order Allan Variance for Frequency Stability Evaluation of Multi-Dimensional Atomic Clocks.” Ieej Transactions on Electronics Information and Systems, vol. 143, no. 10, Jan. 2023, pp. 1017–24. Scopus, doi:10.1541/ieejeiss.143.1017.
Ichimura T, Kawaguchi T, Yano Y, Hanado Y, Ishizaki T. Higher-Order Allan Variance for Frequency Stability Evaluation of Multi-Dimensional Atomic Clocks. Ieej Transactions on Electronics Information and Systems. 2023 Jan 1;143(10):1017–1024.

Published In

Ieej Transactions on Electronics Information and Systems

DOI

EISSN

1348-8155

ISSN

0385-4221

Publication Date

January 1, 2023

Volume

143

Issue

10

Start / End Page

1017 / 1024

Related Subject Headings

  • Electrical & Electronic Engineering