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Research on Snubber Circuits for Power Electronic Switch in DC Current Breaking

机译:直流电流断开电力电子开关缓冲电路研究

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The research on snubber circuits for power electronic switch (PE switch) in DC current breaking is introduced in this paper. During the turn-off of PE switch, the voltage of power electronic devices rises quickly due to the high di/dt and system inductance. MOV is connected in parallel with PE switch to absorb the fault energy and suppress overvoltage. However, the voltage across PE switch would surpass the nominal voltage of MOV because of the stray inductance existed in the loop of PE switch and MOV. J.Magnusson proposed a method without snubber by the use of parallel varistors. By analyzing the transient power shock during turn-off, it is concluded that the method achieves the ability of overvoltage suppression at the sacrifice of current turn-off capability. Thus, snubber circuits are indispensable for PE switch in DC current breaking. Through the analysis on principles of snubber function during turn-off operation, the electrical features and parameter of snubber circuits are obtained and two different snubber circuits suitable for PE switch are specifically introduced. Then, a test platform is set up and experimental comparisons are carried out. The turn-off results show that RC snubber has lower overvoltage peak while bringing stronger switch-off power shock than RCD. The further analysis indicates that RCD is more suitable for turn-off capability promotion and RC has advantages in overvoltage spike suppression.
机译:本文介绍了DC电流断裂中电力电子开关(PE开关)缓冲电路的研究。在PE开关的关闭期间,由于高电平的DI / DT和系统电感,电力电子器件的电压快速上升。 MOV与PE开关并联连接,以吸收故障能量并抑制过电压。然而,由于PE开关和MOV的环路中存在杂散电感,PE开关上的电压将超越MOV的标称电压。 J.Magnusson通过使用并行变阻器提出了一种没有缓冲器的方法。通过在关闭期间分析瞬态电力冲击,得出结论,该方法实现了电压抑制在当前关闭能力的牺牲中的能力。因此,缓冲电路对于DC电流断裂中的PE开关是必不可少的。通过分析关闭操作期间缓冲器函数的原理,获得了缓冲电路的电气特征和参数,并且具体地引入了适用于PE开关的两个不同的缓冲电路。然后,建立测试平台并进行实验比较。关闭结果表明,RC缓冲器具有较低的过压峰值,同时引起比RCD更强的关断电源冲击。进一步的分析表明RCD更适合于关断能力促销,RC在过电压尖峰抑制中具有优势。

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