Safety analysis for grounding system of two neighbouring substations in MEA's power distribution system

A. Phayomhom, S. Sirisumrannukul
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引用次数: 2

Abstract

This paper presents construction planning procedures for a new permanent substation to replace an small (temporary) substation that is served to supply the load of the old existing substation while it has not been removed. In the meantime when the ground grids of the two substations are electrically disconnected, the auxiliary grounding system of substation can create steep ground potential rise between the ground grids of the two substations and hence introduces a risk for those who are working nearby. It is therefore important to incorporate safety criteria described in terms of step and touch voltage into electrical designs without any potential electrical hazards. The safety design planning process is illustrated by the Pathumwan (PM) substation of Metropolitan Electricity Authority (MEA). Modeling and simulation is carried out on the Current Distribution Electromagnetic interference Grounding and Soil structure (CDEGS) program. A sequential transition process from the small substation to a permanent substation is suggested to comply with the IEEE standard 80-2000.
MEA配电系统中相邻两个变电站接地系统的安全性分析
本文介绍了一个新的永久变电站的建设规划程序,以取代一个小型(临时)变电站,该变电站是用来提供旧的现有变电站的负荷,而它还没有被拆除。同时,当两个变电站的接地网断开时,变电站的辅助接地系统会在两个变电站的接地网之间产生陡峭的地电位上升,从而给附近的工作人员带来危险。因此,在没有任何潜在电气危险的情况下,将步进电压和接触电压所描述的安全标准纳入电气设计是很重要的。以印度大都会电力局(MEA)的Pathumwan (PM)变电站为例,阐述了安全设计规划过程。对电流分布电磁干扰接地与土壤结构(CDEGS)程序进行了建模与仿真。为了符合IEEE 80-2000标准,建议采用从小型变电站到永久变电站的顺序过渡过程。
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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