Line Loss Reduction with Optimal Placement of DGs by using Contingency Analysis of 5 bus system

Swati K. Warungase, M. Bhatkar
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Abstract

The implementation of Distributed Generations (DGs) is increasing these days, and they are being utilized in distribution networks with the primary objective of improving system dependability. Also, any operational engineer may defend a power system, which is usually done through online security analysis, i.e. contingency analysis (CA). CA is a tool for analyzing the consequences of various outages like transformer, transmission lines, and other component failing. The Newton Raphson load flow method is used which is the finest load flow technique because it delivers correct results in less time, was used in this study to compute 5-bus system responses. Active power indices and voltage performance indices for single line outage on a five-bus system. Contingency Ranking has been done based on values of overall performance indices. Impact on bus voltage and active power flow has been analyzed before and after single line outages of most severe line contingency. Optimal placement of DGs has been done on ranked bus and line loss reduction has been evaluated. In MATLAB, the method's efficacy was evaluated on the IEEE-5 Bus system. This CA will be helpful to operating engineer for knowing which transmission line outage is severe to take the appropriate action which is risky in the system and with this earlier action can be taken to curtail the cause of breakdown of that specific line.
基于五母线系统偶然性分析的dg优化布置降低线损
分布式代(dg)的实现越来越多,它们被用于配电网,主要目的是提高系统的可靠性。此外,任何操作工程师都可以保护电力系统,这通常通过在线安全分析,即应急分析(CA)来完成。CA是一种分析各种中断(如变压器、传输线和其他组件故障)后果的工具。Newton Raphson负载流方法是最好的负载流技术,因为它在更短的时间内提供了正确的结果,在本研究中用于计算5总线系统响应。五母线系统单线停电有功功率指标和电压性能指标。根据各综合绩效指标的值进行了权变排序。分析了最严重的线路事故发生前后对母线电压和有功潮流的影响。在分级母线上对dg进行了优化布置,并对线路损耗降低进行了评价。在MATLAB中,对该方法在IEEE-5总线系统上的有效性进行了评估。该CA将有助于操作工程师了解哪条输电线路的中断是严重的,从而采取适当的措施,这在系统中是有风险的,并且可以采取更早的措施来减少特定线路故障的原因。
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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