基于自适应限流功能固态变压器的多微电网集群故障穿越

Lei Chen, Jingguang Tang, Meng Ding, Zekai Zhao, Xuefeng Qiao, Xinyi Deng
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引用次数: 0

摘要

多微电网集群(mmgc)能够更有效地容纳分布式可再生能源发电机和消耗负荷,可以视为一种改进的微电网技术。针对mmgc的紧急故障穿越(FRT)问题,提出了一种应用具有自适应限流(ACL)功能的固态变压器(SSTs)的方法。首先,介绍了带sst的mmgc的配置结构和控制方案。然后阐述了ACL功能在SST中的实现以及mmgc的等效故障特征。提出了mmgc基于故障严重程度的FRT策略。利用MATLAB建立了具有SSTs的mmgc的详细数字模型。模拟了多个不同位置的故障,验证了该策略的有效性。仿真和比较结果表明,具有ACL功能的sst可以明显地抑制微电网在可容忍范围内的故障电流,缓解电压降,增强微电网的并网能力。此外,该方法还能有效地抑制mmgc的功率角变化和接线频率变化。从而提高了mmgc对故障的鲁棒性,证明了该方法的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fault Ride-Through of Multiple Microgrid Clusters Based on Solid-State Transformers with Adaptive Current-Limiting Function
Multiple microgrid clusters (MMGCs) enable to more efficiently accommodate distributed renewable power generators and consume loads, and it can be regarded as an improved microgrid technology. Aiming at the imperative fault ride-through (FRT) issue of MMGCs, this paper proposes a method of applying solid-state transformers (SSTs) with an adaptive current-limiting (ACL) function. Firstly, the configuration structure and control scheme of the MMGCs with SSTs are presented. Then, the implementation of the ACL function in the SST and the equivalent fault features of the MMGCs are stated. The FRT strategy of the MMGCs in terms of the fault severity level is put forward. Using MATLAB, a detailed digital model of the MMGCs with SSTs is created. Multiple faults with different locations are imitated to validate the proposed FRT strategy's efficacy. From the simulations and comparisons, the SSTs with the ACL function can visibly suppress the fault currents of the MGs under the tolerable range, and alleviate the voltage dips to enhance the grid-connection ability of the MGs. Besides, the power angle changes and connecting line frequency variations of the MMGCs are restrained by the proposed method. Thus, the robustness of the MMGCs defending the faults is well increased, and the proposed method's feasibility is proven.
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