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Voltage distribution along a long ceramic insulator string in a high‐voltage tower window

Bo Zhang (State Key Laboratory of Power System, Electrical Engineering Department, Tsinghua University, Beijing, China)
Jinliang He (Highvoltage Lab., Electrical Engineering Department, Tsinghua University, Beijing, China)
Rong Zeng (Highvoltage Lab., Electrical Engineering Department, Tsinghua University, Beijing, China)
Xidong Liang (Highvoltage Lab., Electrical Engineering Department, Tsinghua University, Beijing, China)

Abstract

Purpose

The purpose of this paper is to introduce an efficient model for analysis of the voltage distribution along the long ceramic insulator strings in a high‐voltage tower window, especially when the structure and parameters of the ceramic insulator are unknown. The effect of the grading ring on the voltage distribution is also investigated.

Design/methodology/approach

A circuit model composed of capacitors is used to analyze the voltage distribution along the ceramic insulator strings in a transmission tower window. The capacitances of the disk insulators, line conductors, and tower are obtained by using the finite element method, charge simulation method, boundary element method, and measurement according to their characteristics.

Findings

The model is very efficient. The voltage distribution along insulator strings can be optimized by adjusting the parameters of the grading ring. The maximum amount of voltage applied to a single insulator disk can be reduced effectively by increasing either the diameter of the grading ring or the distance from the upper surface of the grading ring to the high‐voltage end of the insulator string.

Originality/value

The model is very efficient for analysis of the voltage distribution along the long ceramic insulator strings, especially when the structure and parameters of the ceramic insulator are unknown.

Keywords

Citation

Zhang, B., He, J., Zeng, R. and Liang, X. (2010), "Voltage distribution along a long ceramic insulator string in a high‐voltage tower window", COMPEL - The international journal for computation and mathematics in electrical and electronic engineering, Vol. 29 No. 3, pp. 811-823. https://doi.org/10.1108/03321641011028323

Publisher

:

Emerald Group Publishing Limited

Copyright © 2010, Emerald Group Publishing Limited

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