A method for assessing and locating protection measurement loop errors based on an improved similarity algorithm

It is of importance to detect and locate the errors of the protection measurement loop of the relay protection device for ensuring correct and timely functioning. The complex and changeable power system environment makes error detection and localization challenging. To this end, this paper proposes...

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Published inElectrical engineering Vol. 107; no. 3; pp. 3725 - 3736
Main Authors Mu, Zong Jun, Liu, Deng Xin, Hu, Bin, Li, Zhen
Format Journal Article
LanguageEnglish
Published Berlin/Heidelberg Springer Berlin Heidelberg 01.03.2025
Springer Nature B.V
Subjects
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ISSN0948-7921
1432-0487
DOI10.1007/s00202-024-02704-1

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Abstract It is of importance to detect and locate the errors of the protection measurement loop of the relay protection device for ensuring correct and timely functioning. The complex and changeable power system environment makes error detection and localization challenging. To this end, this paper proposes an entropy weight method-Euclidean distance and Tanimoto similarity (EWM-EDTS)-based method that integrates Euclidean distance and Tanimoto similarity with the entropy weight method. The Euclidean distance algorithm and Tanimoto similarity algorithm are used to calculate and obtain the similarity values between two sequences of samples and then the entropy weight method is used to calculate the weighting coefficients to fuse the two sequences of similarity values to finally obtain the EWM-EDTS distance. By comparing the value of the EWM-EDTS distance with the distance threshold, potential errors in the measurement data can be accurately located and identified. The simulation based on PSCAD shows that the proposed method can significantly improve the accuracy of error detection and localization.
AbstractList It is of importance to detect and locate the errors of the protection measurement loop of the relay protection device for ensuring correct and timely functioning. The complex and changeable power system environment makes error detection and localization challenging. To this end, this paper proposes an entropy weight method-Euclidean distance and Tanimoto similarity (EWM-EDTS)-based method that integrates Euclidean distance and Tanimoto similarity with the entropy weight method. The Euclidean distance algorithm and Tanimoto similarity algorithm are used to calculate and obtain the similarity values between two sequences of samples and then the entropy weight method is used to calculate the weighting coefficients to fuse the two sequences of similarity values to finally obtain the EWM-EDTS distance. By comparing the value of the EWM-EDTS distance with the distance threshold, potential errors in the measurement data can be accurately located and identified. The simulation based on PSCAD shows that the proposed method can significantly improve the accuracy of error detection and localization.
Author Liu, Deng Xin
Mu, Zong Jun
Li, Zhen
Hu, Bin
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EWM-EDTS
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Snippet It is of importance to detect and locate the errors of the protection measurement loop of the relay protection device for ensuring correct and timely...
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SubjectTerms Accuracy
Algorithms
Economics and Management
Electrical Engineering
Electrical Machines and Networks
Energy Policy
Engineering
Entropy
Entropy (statistics)
Error detection
Euclidean geometry
Fault diagnosis
Localization
Neural networks
Original Paper
Power Electronics
Principal components analysis
Signal processing
Similarity
Similarity measures
Weighting methods
Title A method for assessing and locating protection measurement loop errors based on an improved similarity algorithm
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