Improving the response transient and dynamic stability using voltage-based droop control in an islanded microgrid equipped with energy storage

M. Nassaj, S. Mehrnia, H. Rastegar, M. Abedi
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Abstract

Due to the existence of a high number of unintegrated small-scale sources, islanded microgrids need some specific flexibilities such as energy storages. Therefore, in order to control the load and distributed generations in a microgrid, voltage-based droop control is used. This control method determines the switching of power electronic converters to ensure the stable operation of the microgrid. In this paper, the voltage-based droop control is applied to energy storage systems considering their charge condition based on fuzzy controller. This voltage-based droop control automatically adjusts the power priority of microgrid elements too and energy storage systems are considered in this priority list without any communication tools. One of the advantages of this method is coordinated combination of distributed generations in the studied system. The simulated cases prove the efficient performance of voltage-based droop control in transient and dynamic responses in existence of all element of the microgrid.
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基于电压下垂控制的带储能孤岛微电网响应暂态和动态稳定性研究
由于存在大量未集成的小型源,孤岛微电网需要一些特定的灵活性,如能量储存。因此,为了控制微电网中的负载和分布式发电,采用基于电压的下垂控制。这种控制方法决定了电力电子变流器的开关,保证了微网的稳定运行。本文将基于模糊控制器的电压下垂控制应用于考虑充电条件的储能系统。这种基于电压的下垂控制也会自动调整微电网元素的功率优先级,并且储能系统在此优先级列表中被考虑,而无需任何通信工具。该方法的优点之一是将所研究的系统中的分布式代进行协调组合。仿真结果表明,在微电网各单元均存在的情况下,基于电压的下垂控制在暂态和动态响应下都具有良好的性能。
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