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A Multiagent-Based Fault-Current Limiting Scheme for the Microgrids

机译:基于多代理的微电网故障电流限制方案

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摘要

Penetration of distributed generations (DGs) are becoming more widespread in the current electric power networks. One of the most important issues regarding utilization of DG in power systems is related to their impact on fault-current level. In this regard, a multiagent-based fault-current limiting scheme for microgrids is presented in this paper. A typical microgrid is divided into several sections. A number of superconducting fault-current limiters, which are located in suitable locations of the network, can suppress transient fault currents. Fault location is identified using several fault-location identification units (FLIUs), which are installed in suitable places. In each FLIU, fault current is estimated using a Kalman filter and then the residual signal is generated from the calculated and measured fault current. In the fault condition, the faulty section is identified by analyzing the information of FLIUs in the network. Then, the impact of the faulty section on the sound sections is minimized by utilizing the proposed fault-current limiting scheme. Capabilities of the proposed method are evaluated using different simulations on a benchmark microgrid.
机译:分布式发电(DG)的渗透在当前的电力网络中变得越来越普遍。关于在电力系统中利用DG的最重要问题之一是它们对故障电流水平的影响。为此,本文提出了一种基于多代理的微电网故障限流方案。典型的微电网分为几个部分。位于网络适当位置的许多超导故障电流限制器可以抑制瞬态故障电流。使用几个安装在适当位置的故障位置识别单元(FLIU)可以识别故障位置。在每个FLIU中,使用卡尔曼滤波器估算故障电流,然后根据计算出的测量故障电流生成残余信号。在故障状态下,通过分析网络中的FLIU信息来识别故障部分。然后,通过利用提出的故障电流限制方案,将故障部分对声音部分的影响最小化。在基准微电网上使用不同的模拟评估了所提出方法的能力。

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