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A novel bidirectional Z-source DC circuit breaker for DC microgrids

机译:用于直流微电网的新型双向Z源直流断路器

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摘要

A novel bidirectional dc circuit breaker topology is investigated for operation in dc microgrids to help in protection schemes against short circuit faults. When a short-circuit fault occurs, the proposed topology utilizes a Z-source breaker circuit to naturally commutate off the SCR by diverting the current and reducing the current to zero through the SCR, thus avoiding circuit breaking under high current conditions. As compared to existing unidirectional dc circuit breakers, the proposed bidirectional z-source breaker works in applications that require bi-directional power flow between different nodes of microgrids. The analysis, operation and simulation of the new bi-directional breaker topology is presented. The results are obtained for comparative analysis through simulation and validated through hardware testing in the lab.
机译:研究了一种新颖的双向直流断路器拓扑,用于在直流微电网中运行,以帮助制定针对短路故障的保护方案。当发生短路故障时,所提出的拓扑结构利用Z源断路器电路通过转移电流并将通过SCR的电流减小至零来自然地将SCR换相,从而避免了在大电流条件下的电路中断。与现有的单向直流断路器相比,拟议中的双向z源断路器适用于需要在微电网的不同节点之间实现双向功率流的应用。介绍了新型双向断路器拓扑的分析,操作和仿真。通过仿真获得结果以进行比较分析,并在实验室中通过硬件测试进行验证。

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