Determination of the electric field strength of high-voltage substations

D. Koliushko, S. Rudenko, S. O. Tyutyuma, B. V. Vorobiov
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引用次数: 1

Abstract

The electric field strength is one of the main factors influencing sensitive microprocessor equipment and personnel on power stations and substations, power lines. Determining its level is an important applied task for ensuring the safe operation of electrical installations. The aim is to develop calculation relationships for determining the electric field strength created by the busbar of high-voltage substations in the working areas of personnel. The solution of the problem was based on the use of the method of equivalent charges to determine the strength of the electric field created by the complex busbar of high-voltage substations. Methodology. The development was based on solving the problem of the potential of the electric field of a point charge located in a dielectric half-space for a cylindrical coordinate system. By representing the electrode in the form of a set of point charges and subsequent integration, an expression for calculating the potential is obtained, created by a busbar of arbitrary orientation of finite length in an analytical form. Using the principle of superposition of fields and the definition of the derivative, expressions were obtained for calculating the vertical component of the electric field strength at given heights. Results. Based on the obtained expressions, using Visual Basic, the simulation of the distribution of the electric field strength under a three-phase power line with a voltage of 150 kV was performed. Comparison with the known calculation results obtained on the basis of analytical expressions for infinitely long conductors showed that the obtained expressions have an error of no more than 7%. The scientific novelty lies in the fact that for the first time expressions were obtained for determining the electric field strength created by a system of electrodes of finite length, based on the analytical method for solving differential equations. Practical significance. The proposed technique is implemented as a test module of the LiGro specialized software package, which allows modeling complex busbar systems typical for power stations and substations and power lines. A test calculation was carried out for an operating substation of regional electric networks with a voltage class of 110 kV. By comparing the duration of the calculation of switchgears with a diagonal of about 500 m, it was found that the calculation time in the LiGro complex based on the analytical method is several tens of times less than the calculation based on the finite element method. In addition, a more powerful computer was used for the end element simulation.
高压变电站电场强度的测定
电场强度是影响电站、变电站、电力线上敏感微处理器设备和人员的主要因素之一。确定其等级是保证电气设施安全运行的一项重要应用任务。目的是建立确定高压变电站母线在人员工作区域产生的电场强度的计算关系。该问题的解决是基于使用等效电荷法来确定高压变电站复杂母线产生的电场强度。方法。这一发展是基于在圆柱坐标系下解决介电半空间中点电荷的电场势问题。通过将电极表示为一组点电荷和随后的积分形式,得到了计算电势的表达式,该表达式由有限长度的任意方向母线以解析形式创建。利用电场叠加原理和导数的定义,得到了给定高度处电场强度垂直分量的计算表达式。结果。在此基础上,利用Visual Basic对电压为150 kV的三相电力线下的电场强度分布进行了仿真。与已知无限长导体解析表达式计算结果的比较表明,所得表达式误差不超过7%。科学上的新颖性在于,第一次根据求解微分方程的解析方法,得到了确定有限长度电极系统产生的电场强度的表达式。现实意义。提出的技术是作为LiGro专用软件包的测试模块实现的,该软件包允许对电站、变电站和电力线的典型复杂母线系统进行建模。对某110 kV电压等级的区域电网运行变电站进行了试验计算。通过对角线约为500 m的开关柜的计算时间对比,发现基于解析法的LiGro复合体计算时间比基于有限元法的计算时间少几十倍。此外,还采用了功能更强大的计算机进行末端单元仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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