基于模糊系统差动保护方法的直流微电网保护

Masoud Dashtdar, O. Rubanenko, D. Danylchenko, S. M. S. Hosseinimoghadam, N. Sharma, Mohit Baiai
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引用次数: 13

摘要

目前,直流微电网因其优异的性能而备受关注。与交流微电网相比,这种类型的微电网的优点是DC/AC和AC/DC转换步骤少,易于控制,可靠性高,效率高。直流微电网面临的最重要的挑战之一是这样的系统保护。本文提出了一种基于差动保护法的低压环形直流微电网并网保护算法。这种保护方法应该能够快速检测各种类型的高阻抗和低阻抗故障的极对极和极对地故障,并防止系统完全停机。在对故障进行检测和隔离后,利用模糊逻辑和电压暂态来确定故障位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Protection of DC Microgrids Based on Differential Protection Method by Fuzzy Systems
Today, DC microgrids have gained attention due to their performance ability. The advantages of this type of microgrid over AC microgrids are fewer DC/AC and AC/DC conversion steps, easier control, reliability, and higher efficiency. One of the most important challenges that DC microgrids face is such systems protection. In this paper, a protection algorithm based on a differential protection method for a low voltage ring DC microgrid connected to the network is presenting. This protection method ought to able to quickly detect all types of pole-to-pole and pole-to-ground faults for high-impedance and low-impedance faults and prevent complete system shutdown. After detecting and isolating the fault, the fault place was determining using fuzzy logic and using voltage transients.
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