Grounding system design optimization on 275 KV betung substation based on IEEE standard 80-2000

Ishak Kasim, S. Abduh, Nur Fitryah
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引用次数: 5

Abstract

The demand of electricity transmission toward regions for society, industrial and other needs are increasing hence, making electricity transmission and distribution increased as well. The increase in electricity transmission and distribution requires addition of Substation construction. Substation constructions are crucial for economic growth in Indonesia. This research aims to design two models of grounding system, to determine permissible touch voltages and permissible step voltages, and to simulate both designs using CYMGrd Software, whereby both designs were compared to obtain optimal grounding system at 275 KV Betung Substation. With touch voltages and step voltages values of 1387.97 V and 364.6 KV in first model, and touch voltages and step voltages of 1247.2 V and 112.39 V in second model, both model did not exceed permissible touch voltages of 1409.58 V and permissible step voltages of 5050.1 V. Final result of this research showed that second design model was more optimal compared with the first design model.
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基于IEEE 80-2000标准的275 KV间变接地系统优化设计
由于社会、工业等方面的需要,向地区输送电力的需求日益增加,使得输配电也随之增加。输配电业务的增加,要求增加变电站建设。变电站建设对印尼的经济增长至关重要。本研究旨在设计两种接地系统模型,确定允许接触电压和允许阶跃电压,并使用CYMGrd软件对两种设计进行仿真,通过比较两种设计,获得275 KV间变电所的最优接地系统。第一种型号的接触电压和步进电压分别为1387.97 V和364.6 KV,第二种型号的接触电压和步进电压分别为1247.2 V和112.39 V,两种型号均未超过1409.58 V和5050.1 V的允许接触电压。本研究的最终结果表明,与第一种设计模型相比,第二种设计模型更为优化。
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