Mutual inductance parameter measurement and experimental research of double circuit based on different frequency method

Author:

Lei Zeyang12,Zhang Xiaojun12ORCID,Zhuang Wenbing12,Liu Wei12,Wu Suzhou12,Qi Siyi12

Affiliation:

1. State Grid Xinjiang Electric Power Research Institute, Urumqi Xinjiang China

2. Xinjiang Key Laboratory of Extreme Environment Operation and Detection Technology on Power Transmission & Transformation Equipment Xinjiang China

Abstract

AbstractIn order to improve the measurement accuracy of mutual inductance parameters of transmission lines in the environment of double circuit power lines without power outage, this paper establishes simulation models for measuring mutual inductance parameters of transmission lines using the different frequency method in two modes: equal and unequal zero sequence self‐parameters of two circuit lines, using a parallel zero sequence coupling model of double circuit power lines. In the article, simulation analysis is conducted on the line parameters with a coupling coefficient between 0.4 and 0.6 and a line length of 20–50 km. In order to further verify the correctness of the simulation model and measurement methods, a test bench was established based on the principle of line mutual inductance parameter testing in a laboratory dual circuit line without a power outage environment for experimental testing. By comparing the test values under experimental conditions with the standard values, it has been proven that the model and method can meet the actual measurement requirements of engineering.

Publisher

Institution of Engineering and Technology (IET)

Reference19 articles.

1. Interphase fault location method for distribution lines considering their parameter errors;Liu Y.;South Power Syst. Technol,2023

2. Distance Protection Algorithm for Long Parallel Transmission Lines With No Common Bus

3. Research on distribution network fault location based on Bayesian compressed sensing theory;Jia K.;Proc. CSEE,2019

4. High‐sensitivity main protection for ultra‐long‐distance HVDC lines;Hu X.;Proc. CSEE,2020

5. Parameter modification method and influence analysis of double‐circuit transmission lines on the same tower;Dong J.;Hebei Electr. Power,2023

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