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Topology and Parameter Design of the Resistance-Capacitance Hybrid DC Circuit Breaker with Coupling Reactors

机译:耦合反应器电阻电容混合直流断路器的拓扑和参数设计

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DC circuit breakers are the important apparatus of the medium-voltage DC distribution system. In order to limit the fault current and Shorten the whole breaking time, the paper proposes a novel resistive and capacitive type current-limiting medium voltage DC circuit breaker with coupling reactor (MDCB). The primary and the second inductor $(L_{1}, L_{2})$ of coupling reactor are connected to main branch and the high speed switch in series respectively, which is used to limit the fault current and improve the current commutation. The resistance-capacitance element is connected in series with the solid switch unit, which is used to limit the current and decrease the dissipation time of the MOV. This structure can accelerate the current commutation and limit the peak fault current. The influence of the coupling reactor and the resistance-capacitance element on the working process is analyzed and the reference of the parameters design is obtained. The model is established by the MATLAB/Simulink. The influence law of coupling reactor and resistance-capacitance element parameters on commutation time, current limiting effect, and complete shutdown time is gained. The proper parameters of the coupling reactor are as follows: the primary inductor L i is about $250sim 300mu H$, the second inductor L2 is about $50sim 100mu H$ and the coupling coefficient k is about $0.95sim 0.98$,When the resistance and capacitance parameters R and C are in the range of $0.1sim 0.2Omega$ and $ 20sim 50mu$F, the current commutation time is shortened from 1. 5ms to 0. 5ms, the fault current peak value is reduced by 47.1%, the entire shutdown time has been shortened by 1.9ms, and preliminary experiments have been conducted to verify the feasibility of the new topology, which provides a reference for independent research and development of high-performance medium-voltage DC circuit breakers.
机译:DC断路器是中电压DC分配系统的重要装置。为了限制故障电流并缩短整个断开时间,本文提出了一种具有耦合反应器(MDCB)的新型电阻和电容式电流限制介质电压DC断路器。耦合电抗器的主要和第二电感$(L_ {1}, L_ {2})分别连接到主分支和高速开关,用于限制故障电流并提高电流换向。电阻电容元件与固体开关单元串联连接,该固体开关单元用于限制电流并降低MOV的耗散时间。该结构可以加速电流换向并限制峰值故障电流。分析了耦合反应器和电阻电容元件对工作过程的影响,获得了参数设计的参考。该模型由Matlab / Simulink建立。增强了耦合反应器和电阻电容元件参数的影响规律,获得了换向时间,限流效果和完整关闭时间。耦合反应器的适当参数如下:初级电感器L i约为250美元 sim 300 mu h $,第二个电感器l 2 大约$ 50 sim 100 mu h $,耦合系数k约为0.95 sim 0.98 $,当电阻和电容参数r和c的范围为0.1 sim 0.2 omega $和$ 20 sim 50 mu $ f,当前换向时间从1.5ms缩短到0.5ms,故障电流峰值减少47.1%,整个关断时间已缩短1.9ms,并进行了初步实验以验证新拓扑的可行性,为高性能中电压直流断路器的独立研发提供了参考。

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