The State Monitoring Method of Electronic Voltage Transformer Based on L-M Algorithm

In the traditional method of monitoring the state of electronic voltage transformer, there are problems of large monitoring error and weak robustness. Therefore, a new state monitoring method of electronic voltage transformer based on L-M algorithm is proposed. The relationship between input voltage...

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Bibliographic Details
Published inJournal of advanced computational intelligence and intelligent informatics Vol. 23; no. 3; pp. 385 - 389
Main Author Lian, Han
Format Journal Article
LanguageEnglish
Published 20.05.2019
Online AccessGet full text
ISSN1343-0130
1883-8014
1883-8014
DOI10.20965/jaciii.2019.p0385

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Summary:In the traditional method of monitoring the state of electronic voltage transformer, there are problems of large monitoring error and weak robustness. Therefore, a new state monitoring method of electronic voltage transformer based on L-M algorithm is proposed. The relationship between input voltage and output voltage of capacitor voltage divider in electronic voltage transformer is obtained by using Laplasse transform. The transfer function model of electronic voltage transformer is constructed based on the relationship result and L-M algorithm. The transfer function model is used to analyze the frequency characteristics of the electronic voltage transformer and the range of normal measurement frequency, and then the partial pressure ratio of the electronic voltage transformer under the high frequency condition is derived. On this basis, by calculating the over voltage amplitude on the two sides of acquisition card in the electronic voltage transformer, the capacitance value between the two adjacent coaxial cylindrical cylinders of the capacitance divider in the electronic voltage transformer is obtained, thus the monitoring of the state of the electronic voltage transformer is completed. The experimental results show that the proposed method has low detection error and strong robustness, and can effectively improve the reliability of electronic voltage transformer.
ISSN:1343-0130
1883-8014
1883-8014
DOI:10.20965/jaciii.2019.p0385