A First Approach on the Impact of Distributed Generation and network topology on Studies of Voltage Sags

A. Ramos, C. Generation, Transmission S.A. Brazil, A. J. Batista, R. Leborgne, E. G. Domingues, W. Calixto
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Abstract

An analysis of the distributed generation (DG) and network topology impact on studies of voltage sags caused by system faults is presented. The simulation of 62 case studies of phase-to-ground faults on 13.8, 69, 138 and 230 kV transmission lines were performed and the voltage of a 380 V sensitive industrial busbar client was monitored. These lines are part of the electrical system of the city of Goiania, Brazil. For each case study, different fault positions were simulated by considering different DG levels connected to the consumer busbar. Long-term simulation scenarios were obtained by the Monte Carlo method and analyzed based on their cumulative distribution functions and probability density curves of voltage sags. This is one major contribution of this work. Key Words—Power quality, voltage sags, distributed generation, Monte Carlo method, Network Topology.
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分布式发电和网络拓扑对电压跌落研究的影响初探
分析了分布式发电和网络拓扑结构对系统故障引起的电压跌落研究的影响。对13.8、69、138和230 kV输电线路的62例相地故障进行了仿真研究,并对380 V敏感工业母线客户端电压进行了监测。这些线路是巴西戈亚尼亚市电力系统的一部分。对于每个案例研究,通过考虑连接到用户母线的不同DG级别来模拟不同的故障位置。通过蒙特卡罗方法获得了长期模拟情景,并根据其累积分布函数和电压跌落概率密度曲线进行了分析。这是这项工作的一个主要贡献。关键词:电能质量,电压跌落,分布式发电,蒙特卡罗方法,网络拓扑。
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