Statistical Process Control And Analytical Hierarchy Process Methods For Reducing Earth Resistance

W. Wahyono, Nur Fatowil Aulia, Baktiyar Mei Hermawan
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引用次数: 1

Abstract

Security or protection systems at generators, substations, transmission, and housing and others, especially to overcome lightning disturbances and leakage currents, the earthing system must meet the required standards. For each part of the system, from transmission, substation and residential electricity utilization as well as other parts, the standard of earth resistance is not the same, for example for housing a maximum of 5 Ω, for a small generator system a maximum of 10 Ω, for a large generator a maximum of 20 Ω and so on etc. In areas where the soil type resistance is high, it is necessary to reduce the value of the earth resistance so that it reaches the Indonesian national standard. There are many ways to reduce the value of earth resistance, including lowering soil resistivity, adding electrodes to the soil, changing the type of electrode and its diameter, and so on. The aim of the research was to determine the effect of the value of earthing resistance on the depth of electrode planting and the type of soil that is affected by the water content in the soil and to apply simple statistical tools, namely Statistical Process Control (SPC) and Anlytical Hierarchy Process (AHP).

The measurement method in this research uses a three-point system, namely one point for the test electrode and two points for the auxiliary electrode and the measuring instrument used to measure earth resistance is a digital earth resistance tester type digital model 4105A. This tool is designed according to international electrical commission (IEC) standards. To analyze reducing earth resistance using Statistical Process Control (SPC) and Analytical Hierarchy Process (AHP) methods. The design of this research is to answer the problems and research objectives that have been planned, namely to determine the effect of soil type on earth resistance and to analyze efforts to reduce the value of earth resistance to achieve standards with statistical process control (SPC) and analytical hierarchy process (AHP) methods. To find potential causes, it is done by calculating the analytical hierarchy process (AHP) in order to obtain a sequence of problems to be solved. If the consistency ratio value is more than 10%, then the data judgment must be corrected, but if the consistency ratio is less than or equal to 10% then the calculation results are declared correct or accepted. From the results of the AHP calculation, it is then verified by testing the earth resistance.

降低接地电阻的统计过程控制和层次分析法
发电机、变电站、输电、住房和其他地方的安全或保护系统,特别是为了克服雷电干扰和泄漏电流,接地系统必须符合要求的标准。对于系统的每个部分,从输电、变电站和居民用电到其他部分,接地电阻的标准都不相同,例如,外壳最大为5Ω,小型发电机系统最大为10Ω,大型发电机最大为20Ω,等等。在土壤型电阻高的地区,有必要降低接地电阻值,使其达到印尼国家标准。降低接地电阻值的方法有很多,包括降低土壤电阻率、在土壤中添加电极、改变电极类型及其直径等。本研究的目的是确定接地电阻值对电极种植深度和受土壤含水量影响的土壤类型的影响,并应用简单的统计工具,即统计过程控制(SPC)和层次分析法(AHP),即用于测试电极的一个点和用于辅助电极的两个点,并且用于测量接地电阻的测量仪器是数字接地电阻测试仪型数字型号4105A。该工具是根据国际电气委员会(IEC)标准设计的。采用统计过程控制(SPC)和层次分析法(AHP)对降低接地电阻进行分析。本研究的设计是为了回答已经规划的问题和研究目标,即确定土壤类型对接地电阻的影响,并通过统计过程控制(SPC)和层次分析法(AHP)分析降低接地电阻值以达到标准的努力。为了找出潜在的原因,通过计算层次分析法(AHP)来获得一系列需要解决的问题。如果一致性比值大于10%,则必须更正数据判断,但如果一致性值小于或等于10%,则宣布计算结果正确或可接受。根据AHP计算的结果,通过测试接地电阻进行验证。
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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