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Optimal capacitor placement and sizing in distorted radial distribution systems part I: System modeling and harmonic power flow studies

机译:变形的径向配电系统中电容器的最佳放置和尺寸调整第一部分:系统建模和谐波潮流研究

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Shunt capacitors can be of great help in enhancing the performance of distribution systems. However, the addition of shunt capacitors may lead to high distortion levels causing damage to electric equipment of both the electric utility and customers. As a result, shunt capacitors should be optimally located and rated taking the presence of harmonics into account. The essential first step in solving the optimal placement and sizing problem is modeling system components in detail. In addition to system modeling, an efficient harmonic power flow program plays a vital role in studying system response characteristics when harmonics are being propagated in distribution systems. In this paper, part I in a series of three papers, three-phase representations of system components and a harmonic power flow algorithm (HPF) that exploits the unique characteristics of distribution systems are presented.
机译:并联电容器对提高配电系统的性能可能有很大帮助。但是,增加并联电容器可能会导致高失真度,从而损坏电力公司和用户的电气设备。因此,应考虑谐波的存在,对分流电容器进行最佳定位和定额。解决最佳布局和尺寸问题的基本第一步是对系统组件进行详细建模。除了系统建模之外,当谐波在配电系统中传播时,有效的谐波潮流程序对于研究系统响应特性也起着至关重要的作用。本文是由三篇论文组成的系列文章的第一部分,系统组件的三相表示以及利用配电系统独特特性的谐波潮流算法(HPF)。

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