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The current commutation characteristics of DC micro-grid hybrid circuit breakers

机译:直流微电网混合式断路器的电流换向特性

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The paper focuses on the current commutation between the vacuum arc and the IGBTs of DC micro-grid hybrid circuit breakers (HCB). The principle of the DC HCB is analyzed and the current commutation is the important process in DC HCB interruption, on which the arcing time and the interrupting time are depended. The test circuit of the current commutation is established by simplifying the parallel-connected IGBTs to an on-state resistance with large thermal capacity. The influence of the magnitude of the main current, the resistance of the IGBTs and the externally applied transverse magnetic field (TMF) on the current commutation is investigated by the electrical measure and the development of vacuum arc which is observed by a high speed CMOS camera. The mathematic description of the current commutation is obtained. The interaction between the vacuum arc commutation and the externally applied TMF is discussed. The paper provides the bases on the optimal design and control strategy of DC HCB.
机译:本文着重研究直流微电网混合式断路器(HCB)的真空电弧与IGBT之间的电流换向。分析了DC HCB的原理,电流换向是DC HCB中断的重要过程,其起弧时间和中断时间都与之有关。通过将并联连接的IGBT简化为具有大热容量的导通电阻,可以建立电流换向的测试电路。通过电学方法和高速CMOS摄像机观察到的真空电弧的发展,研究了主电流大小,IGBT的电阻和外部施加的横向磁场(TMF)对电流换向的影响。 。获得了当前换向的数学描述。讨论了真空电弧换向与外部应用的TMF之间的相互作用。本文为DC HCB的优化设计和控制策略提供了依据。

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