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Investigation on DC interruption based on artificial current zero of vacuum switch

机译:基于真空开关人工零电流的直流中断研究

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Direct current interruption utilizing vacuum switch based on artificial current zero is investigated. A high-speed vacuum switch, which is driven by electromagnetic repulsion force, is adopted as the main switch. The injection of high-frequency countercurrent is controlled by a triggered vacuum switch. The main experimental current is supplied by a LC circuit. The overvoltage generated during interruption is suppressed by metal oxide arrester. The interruption process is also simulated via a circuit model, with which the two important current commutation processes are analyzed, i.e., the current commutation from main switch to countercurrent branch, and the current commutation from countercurrent branch to arrester branch. Simulation results are compared with measured waveforms of voltage and current.
机译:研究了基于人工零电流的真空开关的直流中断。主开关采用由电磁排斥力驱动的高速真空开关。高频逆流的注入由触发的真空开关控制。主要实验电流由LC电路提供。金属氧化物避雷器可抑制中断期间产生的过电压。还通过电路模型来模拟中断过程,该电路模型分析了两个重要的电流换向过程,即,从主开关到逆流分支的电流换向,以及从逆流分支到避雷器分支的电流换向。将仿真结果与电压和电流的测量波形进行比较。

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