Analysis of protection failure effect and relay coordination on reliability index

I. G. N. Satriyadi Hernanda, Evril N. Kartinisari, D. A. Asfani, D. Fahmi
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引用次数: 1

Abstract

A power system must be able to deliver the electric power even though some disturbance occurs. The failure of the protection system to localized fault can cause catastrophic failure of a system or blackout. In this research, an algorithm based on Monte Carlo simulations is proposed to obtain the reliability index that considers the overcurrent relay coordination varied by time settings of overcurrent relay. The reliability index consists of SAIFI, SAIDI, and CAIDI. Monte Carlo is a simulation procedure to obtain the reliability index by using a random number of generation and a simulated through a program. The results from Monte Carlo simulations is to determine the disturbance in a transmission line, the overcurrent relay that works at the time, and the reliability index on consumer that the parameters is derived from the amount of the failure rate and the rate of improvement of the line and transformer. The proposed method is compared to commercial software that is ETAP®. The results of ETAP simulation only count the failures in transformers, and the outcome of SAIFI and SAIDI is 0.013 and 0.1819. Other ways on the Monte Carlo simulation to determine disturbances in line with the generation of random numbers on the 2000 iteration, value of SAIFI and SAIDI is 0.0139 and 0.2697. The strength points of this study are implementing and analyzing the method into real system in Indonesia.
保护失效效应及继电器配合对可靠性指标的影响分析
电力系统必须能够在发生扰动时仍能输送电力。保护系统局部故障的失效会引起系统的灾难性故障或停电。本研究提出了一种基于蒙特卡罗仿真的算法来获得考虑过流继电器配合度随过流继电器时间设定变化的可靠性指标。可靠性指标包括SAIFI、SAIDI和CAIDI。蒙特卡罗仿真程序是利用随机数生成可靠度指标,并通过程序进行仿真。蒙特卡罗模拟的结果是确定输电线路中的扰动,同时工作的过流继电器,以及用户的可靠性指标,这些参数是由线路和变压器的故障率和改进率得出的。所提出的方法与商业软件ETAP®进行了比较。ETAP仿真结果仅计算变压器故障,SAIFI和SAIDI的结果分别为0.013和0.1819。其它方法在蒙特卡罗模拟上确定扰动符合随机数的生成,在2000次迭代上SAIFI和SAIDI的值分别为0.0139和0.2697。本研究的优势在于将该方法应用于印度尼西亚的实际系统中进行实施和分析。
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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