August 2020

Conference Paper

Timestamp Error Detection and Estimation for PMU Data based on Linear Correlation between Relative Phase Angle and Frequency

By:
Yu, Wenpeng; Yao, Wenxuan ; Zhao, Yinfeng; Liu, Yilu
Journal Name:
Proceedings of the Hawaii International Conference on System Sciences
Page Number:
3040-3044
Issue Number:
not applic
Book Title:
Proceedings of the 53rd Hawaii International Conference on System Sciences
Publication Date:
August 14, 2020
Conference Name:
Proceedings of the 53rd Hawaii International Conference on System Sciences (HICSS)
Conference Location:
Maui, Hawaii, United States of America
Conference Sponsor:
University of Hawaii
View DOI Listing:
https://doi.org/10.24251/HICSS.2020.371

Abstract

Time synchronization is essential to synchro-phasor-based applications. However, Timestamp Error (TE) in synchrophasor data can result in application failures. This paper proposes a method for TE detection based on the linear correlation between frequency and relative phase angle. The TE converts the short-term relative phase angle from noise-like signal to one that linear with the frequency. Pearson Correlation Coefficient (PCC) is applied to measure the linear correlation and then detect the timestamp error. The time error is estimated based on the variation of frequency and relative phase angle. Case studies with actual synchrophasor data demonstrate the effectiveness of TE detection and excellent accuracy of TE estimation.


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