非等间距复杂接地网的瞬变电磁法方向检测

Usman Saleem, Safdar Raza, Inzamam Ul Haq, M. Ashraf
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引用次数: 0

摘要

目前提出的所有接地网故障诊断方法都需要接地网的配置,如果配置未知,则应用接地网配置检测技术,所有这些最新技术都进一步要求铺设网格的朝向角度,如果网格的朝向未知或不正确,则计算出的配置将会误导和不正确,我们将无法诊断出接地网故障。本文采用瞬变电磁法方法对非等间距接地网进行定向检测,将非等间距接地网划分为复杂接地网,并将其进一步划分为大网格、小网格或两种网格均含对角线单元的非等间距接地网。在TEM方法中,在半径为恒定r的圆形路径上的八个不同点上发现等效电阻率和磁场强度,以确定网格的大小和是否对角的导体的存在。使用COMSOL Multiphysics 5.4软件进行模型设计和仿真,利用COMSOL Multiphysics 5.4软件导出磁场强度和电动势值,并在MATLAB代码中调用电动势值,通过许多数学公式运行并获得所有期望点的等效电阻率。得到的等效电阻率和磁场强度值验证了该方法在复杂接地网方向检测中的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Orientation Detection of Unequally Spaced Complexed Grounding Grids using Transient Electromagnetic Method
Configuration of Grounding Grid is required for all currently proposed Fault Diagnosing methods of Grounding Grid if the configuration is unknown then Grounding Grid Configuration detection techniques are applied and all of these latest techniques further requires the oriented angle at which the grid is laid and if the orientation of the grid is unknown or incorrect then the calculated configuration will be misleading and incorrect and we will fail to diagnose the Grounding Grid Fault. In this paper Transient Electromagnetic Method approach is used for orientation detection of Unequally Spaced Grounding Grids which are categorized as complexed grids further classified as Unequally spaced grounding grids with a diagonal element at larger mesh, smaller mesh, or in both of these meshes. In TEM method Equivalent Resistivities and Magnetic Field Intensities are found at eight different points in a circular path of constant radius r to determine the size of meshes and the presence of conductors whether diagonal or not diagonal. Model Designing and Simulations are performed using COMSOL Multiphysics 5.4 software, values of Magnetic Field Intensities and EMF are derived from COMSOL Multiphysics 5.4 software and the EMF values are further called in a MATLAB code to run through a number of mathematical formulations and Equivalent Resistivity is obtained for all desired points. Obtained values of Equivalent Resistivity and Magnetic Field Intensities verifies the effectiveness of the proposed approach for orientation detection of complexed grounding grid.
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