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Optimal placement of faulted circuit indicators in power distribution systems

机译:配电系统中故障电路指示器的最佳布置

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摘要

Power distribution utilities often use impedance-based methods for locating faults along their feeders. For feeders with laterals, these techniques may identify different possible locations for the same fault. This leads to higher costs and longer restoration time. In order to improve impedance-based methods, faulted-circuit indicators (FCI) can be allocated along the feeder to reduce, or even eliminate, the uncertainty about the fault location. This paper proposes a technique for optimally allocating a given number of FCIs along distribution feeders using the Chu-Beasley genetic algorithm to solve the optimization problem. The proposed objective functions measure the number of locations that are suspected to be the actual fault location or the distance among them. Additionally, it is possible to consider the presence of priority areas. We present results for the IEEE 34-bus system and for a 475-bus actual system. The results show the effectiveness of the proposed technique in improving impedance-based fault location methods.
机译:配电公用事业公司通常使用基于阻抗的方法来沿馈线定位故障。对于带有支管的馈线,这些技术可以为同一断层识别不同的可能位置。这导致更高的成本和更长的恢复时间。为了改进基于阻抗的方法,可以在馈线上分配故障电路指示器(FCI),以减少甚至消除有关故障位置的不确定性。本文提出了一种使用Chu-Beasley遗传算法沿配送馈线最优分配给定数量的FCI的技术,以解决优化问题。提出的目标函数可测量怀疑是实际故障位置的位置数或它们之间的距离。另外,可以考虑优先区域的存在。我们介绍了IEEE 34总线系统和475总线实际系统的结果。结果表明所提出的技术在改进基于阻抗的故障定位方法方面的有效性。

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