Assessment of Expected Customer Interruption Cost Due to Power System Contingency by Sensitivity Analysis

Siti Nur Atikah A Majid, N. A. Salim, H. Mohamad, Z. M. Yasin
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引用次数: 2

Abstract

Cost/benefit analysis of power system is one of the most challenging task due to the impact of electric utility deregulation and market competition. However, it becomes an essential factor in order to determine the system reinforcement and expansion projects. A major role in the application reliability concepts and accomplishment of an acceptable level of reliability is economic. Therefore, it is important to determine the optimal reliability level at which the reliability investment achieves the best results in reducing the customer damage costs due to power supply interruption. This paper presents an assessment of reliability cost/benefit index of expected customer interruption cost (ECOST) by considering power system contingency which are load adjustment and transmission line tripping by applying the sensitivity analysis. ECOST index quantifies the reliability of power system in terms of monetary. The value of ECOST is evaluated based on load increment/decrement and transmission line tripping. In order to calculate ECOST, load curtailment is performed. IEEE Reliability Test System 1979 (IEEE RTS- 79) is used to validate the assessment of ECOST due to load adjustment and line tripping. The findings have proved that the ECOST increases with the increased of the total loading condition and line tripping. Therefore, this method could be applied in order to assist the power system utility in monitoring the contingency in the system.
基于灵敏度分析的电力系统突发事件客户中断预期成本评估
由于电力管制的放松和市场竞争的影响,电力系统的成本效益分析是最具挑战性的任务之一。然而,它成为确定系统加固和扩建方案的一个重要因素。应用程序可靠性概念和实现可接受的可靠性水平的主要作用是经济。因此,确定可靠性投资达到最佳效果的最优可靠性水平对于降低因供电中断而造成的客户损失成本具有重要意义。本文应用灵敏度分析方法,在考虑负荷调整和输电线路跳闸等电力系统突发事件的情况下,对期望用户中断成本(ECOST)的可靠性成本效益指标进行了评估。ECOST指标是用货币来量化电力系统可靠性的指标。ECOST的值是根据负荷的增减和输电线路的跳闸来计算的。为了计算成本,进行了负荷缩减。IEEE可靠性测试系统1979 (IEEE RTS- 79)用于验证负荷调整和线路跳闸造成的成本评估。研究结果表明,随着总载荷条件的增加和起下钻的增加,ECOST也随之增加。因此,该方法可用于辅助电力公司监测系统中的突发事件。
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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