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Towards active distribution networks fault location: Contributions considering DER analytical models and local measurements

机译:走向有源配电网故障定位:考虑DER分析模型和局部测量的贡献

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摘要

This paper presents an analytical methodology to estimate the fault location in active distribution networks. State-of-the-art solutions for active distribution networks fault location consider wide-area measurements, which include synchronized measurements obtained by Phasor Measurement Units (PMU). For distribution networks though, the capital cost of such solutions is prohibitive. Most recently, solutions have been proposed without considering synchronized measurements. However, they have some limitations, such as not considering multiple inverter-interfaced Distributed Energy Resources (DER). The solution presented is composed of a load flow based approach, which uses only locally available measurements. A ladder iterative technique is proposed to estimate the system state variables during the fault period. DERs models, which consider various modes of operation and fault conditions are used. An impedance formulation which considers distribution networks inherent characteristics is presented. The proposed methodology is validated on the IEEE 34-nodes test feeder. The ease of implementation of design, formulation of parameters and encouraging test results indicate potential for real-life applications.
机译:本文提出了一种分析方法来估计有源配电网中的故障位置。有源配电网故障定位的最新解决方案考虑了广域测量,其中包括由相量测量单元(PMU)获得的同步测量。但是,对于分销网络而言,此类解决方案的资金成本高昂。最近,提出了不考虑同步测量的解决方案。但是,它们具有一些局限性,例如不考虑多个逆变器接口的分布式能源(DER)。提出的解决方案由基于潮流的方法组成,该方法仅使用本地可用的测量值。提出了一种梯形迭代技术来估计故障期间的系统状态变量。使用了考虑各种操作模式和故障条件的DERs模型。提出了一种考虑配电网络固有特性的阻抗公式。所提出的方法已在IEEE 34节点测试馈送器上得到验证。设计的易于实施,参数的制定以及令人鼓舞的测试结果表明了其在现实生活中的应用潜力。

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