用于直流微电网的新型双向t源直流断路器

Weizhang Song, N. An, You-yun Wang
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引用次数: 8

摘要

本文提出了一种基于t源串联电路的双向直流断路器,适用于微网不同节点和负载之间需要双向潮流的场合。当发生短路故障时,所提出的拓扑利用t源变压器通过晶闸管耦合并将电流降至零来自然地换流到可控硅(SCR),从而避免了在高电流工作条件下的电路断路,此外,该拓扑允许仅使用单个受控开关对源侧或负载侧的故障做出响应。与单向串联t源断路器拓扑结构相比,不需要额外的无源元件。分析了在单负荷电力系统中导致双向断路器跳闸的故障条件,推导了该断路器电路的传递函数,并设计了电路参数。最后,利用PSIM仿真平台对双向断路器在源侧和负载侧故障下的工作原理进行了评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Bidirectional T-source DC Circuit Breaker for DC Microgrids
A bidirectional DC breaker based on T-source series circuit is presented in this paper, which can work in the application where require bi-directional power flow between different nodes of microgrid and loads. When a short-circuit fault occurs, the proposed topology utilizes a T-source transformer to naturally commutate off the thyristor(SCR) by coupling and reducing the current to zero through the thyristor, thus avoiding circuit breaking under high current operating condition, furthermore, this topology allows a response to faults on either the source or load side only using a single controlled switch, no additional passive components are required compared with the unidirectional series T-source circuit breaker topology. The analysis is performed to find the fault conditions that cause the bi-directional circuit breaker to trip when operating in a single load power system, the transfer function of this breaker circuit is deduced and circuit parameters is designed. Finally, the operation principle of the bi-directional circuit breaker is evaluated for both source and load side faults by using a simulation platform PSIM.
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