基于Hilbert空间和模糊决策过程的微电网差动保护新方案

A. Abdulwahid, Shaorong Wang
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引用次数: 13

摘要

如今,分布式发电(DG)的使用越来越多,因为它具有提高可靠性、减少损耗、提高线路容量和减少环境污染等优点。由发电源组成的微电网的保护是基本配电运营商最关心的问题之一。该领域的关键问题之一是通过提高网络的安全性和可靠性来保护微电网免受永久性和暂时性故障的影响。所使用的传统方法有许多缺点。该保护方案将模糊规则方法应用于微电网智能保护中,发展了功率差动保护(PDP)。本文提出了一种利用基于Hilbert空间的功率理论(FHSP)的模糊过程来提高差动保护性能的新算法。基于这一理论,可以以一种新颖的方式获得保护。该算法的优点是故障发生后保护系统的运行周期不超过两个周期。另一个优点是错误检测不依赖于阈值的选择,并且所有类型的内部故障都可以识别并显示算法对所有类型的故障正确运行,同时防止不必要的跳闸,即使数据因电流互感器(CT)饱和或数据不匹配而扭曲。
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A new differential protection scheme for microgrid using Hilbert space based power setting and fuzzy decision processes
Nowadays, the use of a distributed generation (DG) has increased because of the benefits such as increased reliability, reduced losses, and improvement in the line capacity and less environmental pollution. The protection of microgrids, which consists of generation sources, it is one of the most crucial concerns of basic distribution operators. One of the key issues in this field is the protection of microgrids against permanent and temporary failures by improving safety and reliability of the network. The traditional method that was used has a number of disadvantages. The proposed protection scheme develops power differential protection (PDP) using the fuzzy rule approach for intelligent protection of microgrids. This paper proposes the development of a new algorithm to improve the differential protection performance by using fuzzy processes with Hilbert space based power theory (FHSP). The protection can be obtained in a novel way based on this theory. An advantage of this algorithm is that the protection system operates in less than two cycles after the occurrence of the fault. Another advantage is that the error detection is not dependent on the selection of threshold values, and all types of internal fault can identify and show that the algorithm operates correctly for all types of faults whilst preventing unwanted tripping, even if the data has been distorted by current transformer (CT) saturation or by data mismatches.
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