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首页> 外文期刊>International journal of electrical power and energy systems >Fault detection and location in a microgrid using mathematical morphology and recursive least square methods
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Fault detection and location in a microgrid using mathematical morphology and recursive least square methods

机译:使用数学形态学和递归最小二乘法在微电网中进行故障检测和定位

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摘要

The concept of microgrids has been proposed as an economical, reliable, and efficient way to integrate a large number of distributed energy resources (DERs) into distribution networks. To ensure the safe operation of a microgrid fast and accurate fault detection and location are crucial. This paper proposes fault detection and location in a microgrid using mathematical morphology (MM) and recursive least-square (RLS) methods. The proposed method first applies dilation and erosion median filter (DEMF) on a current signal to detect and classify the faults in microgrids. Then, the RLS method estimates the fault location using a differential equation derived from an equivalent model of the microgrid. The performance of the proposed method is evaluated on a medium voltage microgrid test system through simulations using MATLAB/SIMULINK. The simulation results depict that the proposed method provides faster fault detection and accurate fault location.
机译:已经提出微电网的概念,作为将大量分布式能源(DER)集成到配电网络中的一种经济,可靠和有效的方法。为了确保微电网的安全运行,快速准确的故障检测和定位至关重要。本文提出了使用数学形态学(MM)和递归最小二乘(RLS)方法在微电网中进行故障检测和定位的方法。所提出的方法首先在电流信号上应用膨胀和侵蚀中值滤波器(DEMF),以检测和分类微电网中的故障。然后,RLS方法使用从微电网的等效模型导出的微分方程估算故障位置。通过使用MATLAB / SIMULINK进行仿真,在中压微电网测试系统上评估了该方法的性能。仿真结果表明,所提方法具有更快的故障检测速度和准确的故障定位能力。

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