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Investigation of fault ride-through capability of AC/DC hybrid microgrids during AC network faults

机译:AC / DC混合微电网在交流网络故障期间的故障穿越能力研究

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This paper investigates the fault ride-through (FRT) capability of an AC/DC hybrid microgrid during AC network faults. AC/DC hybrid microgrids received immense attention in recent years due to the trend of using a separate DC bus for DC sources and loads connected to the microgrid. However, the fault ride-through (FRT) performance of the AC/DC hybrid yet to be fully explored. In particular, the interlinking bidirectional converter performance and DC bus stability are very important for the FRT performance of the entire AC/DC hybrid microgrid. In this study, FRT support strategies are implemented for each distributed energy resource (DERs) within the microgrid, and the interlinking bidirectional converter facilitates the power flow between the AC and the DC microgrids. Results indicate that by employing DERs equipped with FRT capability, it is possible to improve the DC microgrid FRT performance, but negligible improvement can be seen at the AC microgrid. Therefore, further investigations are required to improve the FRT support services provided by the bidirectional converter to enhance the FRT capability of the entire AC/DC hybrid microgrid.
机译:本文研究了AC / DC混合微电网在AC网络故障期间的故障穿越能力(FRT)。交流/直流混合微电网近年来受到了广泛的关注,这是由于使用单独的直流母线来连接直流电源和连接到微电网的负载的趋势所致。但是,AC / DC混合动力的故障穿越(FRT)性能尚未得到充分探索。特别是,互连双向转换器性能和DC总线稳定性对于整个AC / DC混合微电网的FRT性能非常重要。在这项研究中,为微电网内的每个分布式能源(DER)实施了FRT支持策略,并且双向互连转换器促进了AC和DC微电网之间的功率流动。结果表明,通过使用具有FRT功能的DER,可以改善DC微电网的FRT性能,但是在AC微电网上看到的改善可忽略不计。因此,需要进一步研究以改善双向转换器提供的FRT支持服务,以增强整个AC / DC混合微电网的FRT能力。

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