Fault Current Level Analysis of Future Microgrids with High Penetration Level of Power Electronic-Based Generation

Hussain Sarwar Khan, Khaled Syfullah Fuad, M. Karimi, K. Kauhaniemi
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引用次数: 2

Abstract

The integration of power electronics-based generation has increased in the medium voltage (MV) level of the distribution networks, nowadays. It is obvious that the contribution level of this type of source is providing a limited fault current level according to the thermal and fault ride-through capability of power electronic converters. Therefore, the fault current level in the grid-connected and islanded mode of the microgrid is different and the protection scheme is required to be reviewed. In this regard, converters’ responses contribute to the stability of the microgrid in the case of abnormal conditions. This paper has investigated the effect of power electronic converters and their controllers in future microgrids with the high penetration level of power electronic-based generation. A distribution management system has been designed to address the issues and challenges of faulty conditions and a voltage ride-through technique has been proposed. The simulation results of an MV distribution network demonstrate the fault current level of the future microgrid in abnormal conditions. The proper protection strategy is designed to detect any type of short circuit fault current as well as avoidance of damage to the integrated PEC-based generations.
未来电力电子发电高渗透水平微电网故障电流水平分析
目前,配电网中压(MV)水平的电力电子发电一体化程度越来越高。很明显,这种类型的源的贡献水平是根据电力电子变换器的热和故障穿越能力提供有限的故障电流水平。因此,微电网并网和孤岛模式下的故障电流水平是不同的,需要对保护方案进行审查。在这种情况下,变流器的响应有助于微电网在异常情况下的稳定性。本文研究了电力电子变流器及其控制器在电力电子发电高渗透水平的未来微电网中的作用。设计了一种配电管理系统来解决故障条件下的问题和挑战,并提出了一种电压穿越技术。通过中压配电网的仿真结果,揭示了未来微电网在异常情况下的故障电流水平。设计适当的保护策略,以检测任何类型的短路故障电流,并避免损坏集成的基于pec的世代。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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