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Adaptive protection scheme for microgrids based on SOM clustering technique

机译:基于SOM聚类技术的微电网自适应保护方案

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Microgrids are penetrating into the power systems at an unprecedented rate. The reason is the mutual economic and environmental benefits of microgrids, both for power grid utility and the consumers. Some special features of microgrids such as, the two main operational conditions called, islanded and grid-connected modes, and being composed of various types of distributed energy resources along with different uncertainties cause some tough challenges to protection and control systems. From the protection aspect, the coordination of overcurrent relays protection will become a difficulty, due to the extensive changes in the fault current levels sensed by these devices. In this paper, a new adaptive protection coordination scheme based on Self-Organizing Map (SOM) clustering algorithm is proposed for digital overcurrent relays equipped with several setting groups. Considering the similarity of mis-coordinated relay pairs for the clustering purpose, the proposed protection scheme focuses on solving the mis-coordination between main/backup relay pairs. As a case study, a modified IEEE 33-bus test system is used as a microgrid. In the case study, a synchronous distributed generation and two electric vehicle charging stations are installed. The results suggest that not only the proposed method is fully capable and flexible to significantly improve the mis-coordination of overcurrent relay pairs, but it can also ameliorate the operating time of relay. (C) 2020 Elsevier B.V. All rights reserved.
机译:微电网以前所未有的速率渗透到电力系统中。原因是微电网的相互经济和环境益处,用于电网效用和消费者。微电网的一些特殊特征如,称为,岛状和电网连接模式的两个主要操作条件,并由各种类型的分布能源资源组成以及不同的不确定性,对保护和控制系统产生一些艰难的挑战。从保护方面,由于这些设备感测的故障电流水平的广泛变化,过电流继电器保护的协调将成为困难。本文提出了一种基于自组织地图(SOM)聚类算法的新的自适应保护协调方案,用于配备有几个设置组的数字过电流继电器。考虑到MIS协调继电器对为聚类目的的相似性,所提出的保护方案侧重于解决主/备份继电器对之间的错误协调。作为案例研究,改进的IEEE 33总线测试系统用作微电网。在案例研究中,安装了同步分布式产生和两个电动车辆充电站。结果表明,不仅提出的方法完全有能力和灵活性,以显着提高过电流继电器对的错误协调,但它还可以改善继电器的操作时间。 (c)2020 Elsevier B.V.保留所有权利。

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