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Research on a novel bidirectional direct current circuit breaker

机译:新型双向直流断路器的研究

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A novel Medium Voltage Direct Current (MVDC) circuit breaker consisting of a High-Speed Switch(HSS) and a bridge-type commutation branch, which is based on current injection, is proposed and analyzed in this paper. The commutation branch of this design adopts bridge type, which can break bidirectional fault current rapidly by controlling thyristors. Meanwhile, after fault current is commutated to the commutation branch completely, the freewheeling diodes can provide time for dielectric recovery with zero recovery voltage across HSS, which can improve the reliability of fault current breaking. The principle and operation sequence of this topology are described. Based on the simulation model, the breaking process in 10kV DC system with different fault current rates of rise are simulated. Besides, the relationship between the current commutation capability and the loop inductance is investigated. Finally, the prototype of 10kV DC circuit breaker is constructed, and the fault current breaking tests are carried out with breaking current of 20kA and above, which validate the feasibility and effectiveness of the topology and simulation model well.
机译:提出并分析了一种由高速开关和桥式换向支路组成的新型中压直流断路器,该断路器基于电流注入。该设计的换向支路采用桥式,通过控制晶闸管可以迅速断开双向故障电流。同时,将故障电流完全换流到换向支路后,续流二极管可以为介质恢复提供时间,HSS两端的恢复电压为零,从而可以提高故障电流分断的可靠性。描述了这种拓扑的原理和操作顺序。基于仿真模型,对故障电流上升率不同的10kV直流系统的分断过程进行了仿真。此外,研究了电流换向能力与环路电感之间的关系。最后,构建了10kV直流断路器的样机,并在20kA及以上的分断电流下进行了故障电流分断测试,很好地验证了拓扑和仿真模型的可行性和有效性。

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