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Fault current limiter optimal placement considering different microgrid operational modes using Cuckoo search algorithm

机译:使用Cuckoo搜索算法考虑不同微电网运行模式的故障限流器的最佳位置

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Nowadays, the spread of smart grids is becoming more and more important due to their various technical and economic advantages. One of the most important aspects of smart grids is the use of low voltage products in the structure of distribution networks and their conversion into grid networks. A microgrid is a low power grid that can operate in different modes in relation to its upstream network: the functional modes of connected to or disconnected from the upstream network. These functional status shifts are always challenging to the microgrid utilization, one of which is the great difference between the measured fault current in the two operational modes of the grid. Protectoral equipment used based on the fault current measured when in disconnected operational mode may not function properly when connected to the upstream network. Using the Fault Current Limiter (FCL) is one way to reduce the effects of these disparities. One of the influencing factors beside the technicalities, is the economic aspects of the FCL. In this paper, we first develop a target function based on the technical and economic aspects of the FCL to reduce the difference between the two currents and the optimal value of these limiters by the Cuckoo Optimization Algorithm (COA). The results of the simulations performed in the MATLAB environment show the impact of FCL on the microgrid from the technical and economic point of view.
机译:如今,智能电网由于其各种技术和经济优势而变得越来越重要。智能电网最重要的方面之一是在配电网的结构中使用低压产品并将其转换为电网。微电网是一种低功率电网,相对于其上游网络可以以不同的模式运行:连接到上游网络或从上游网络断开的功能模式。这些功能状态转换始终对微电网的利用提出挑战,其中之一是在两种电网运行模式下测得的故障电流之间的巨大差异。当连接到上游网络时,基于在断开操作模式下测得的故障电流而使用的保护设备可能无法正常工作。使用故障电流限制器(FCL)是减少这些差异影响的一种方法。 FCL的经济方面是影响技术性的因素之一。在本文中,我们首先基于FCL的技术和经济方面开发目标函数,以通过布谷鸟优化算法(COA)来减小两个电流之间的差异以及这些限制器的最优值。在MATLAB环境中执行的仿真结果从技术和经济角度显示了FCL对微电网的影响。

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