Title :
Analysis of Interference Current for High-Voltage Arresters Based on Resistance–Capacitance Network
Author :
Jinliang Li ; Jiangjun Ruan ; Zhiye Du ; Lingyan Li ; Junjie Ding ; Hengyu Ding ; Lin Zhu ; Shuo Jin
Author_Institution :
Sch. of Electr. Eng., Wuhan Univ., Wuhan, China
Abstract :
The iterative algorithm based on resistance-capacitance (RC ) network model is put forward to eliminate the interphase interference in measuring the total leakage current of high-voltage zinc oxide arresters; this method can calculate the total leakage current and phase angle difference (the angle between voltage and current) of arresters precisely. The finite-element method is applied to calculate the stray capacitances of arresters by establishing 3-D arresters models. The total leakage current, resistive leakage current, and phase angle difference of arresters can be obtained through the calculation. The actual leakage currents and phase angle differences of 220 and 500 kV arresters in the substation were measured and compared with the calculation results. The comparison results demonstrated the effectiveness and correctness of the proposed method. The interference currents can be obtained by analyzing the one-phase and three-phase results. Then, using the iterative algorithm, the interphase interference of arresters can be eliminated effectively. Compared with some other measurement methods, this method is advantageous for its simplicity and generality.
Keywords :
arresters; finite element analysis; interference suppression; iterative methods; leakage currents; 3D arresters models; RC network model; finite-element method; high-voltage zinc oxide arresters; interference current; interference currents; interphase interference elimination; iterative algorithm; phase angle difference; resistance-capacitance network; resistive leakage current; stray capacitances; total leakage current; Arresters; Capacitance; Current measurement; Interference; Leakage currents; Phase measurement; Zinc oxide; Finite-element method (FEM); high-voltage arresters; interphase interference; leakage current; resistance???capacitance (RC) network;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2014.2358380