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Active Clamping Circuit With Status Feedback for Series-Connected HV-IGBTs

机译:具有状态反馈的有源钳位电路,用于串联的HV-IGBT

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摘要

Active clamping circuits can effectively suppress the voltage imbalance between series-connected insulated-gate bipolar transistors (IGBTs). However, while the active clamping circuit is conducting, extra current is injected into the gate of the IGBT, the gate voltage increases, and the IGBT operates in the active region. Therefore, long time conduction and frequent actions of the active clamping circuit will lead to extremely high switching loss of the IGBT with high collector-emitter voltage and serious switching loss imbalance between the series-connected IGBTs, which imperils the efficiency and safety of the system, particularly in the applications of high-voltage IGBT (HV-IGBT) series connection. In this paper, a novel active clamping circuit with status feedback is proposed for series-connected HV-IGBTs. A high-speed status feedback subcircuit is designed for transforming the operation status of an active clamping circuit into optical signal and feeding it back to the control system. According to the feedback signals, the microcontroller regulates the switching-on time and switching-off time of the series-connected HV-IGBTs' drive signals timely in order to implement voltage balancing and, thus, to restrain the actions of active clamping circuits. By applying this voltage balancing method to the HV-IGBT series connection circuit, the voltage balancing performance is expected to improve, and high switching loss and serious switching loss imbalance are expected to be suppressed. Experimental results verify the validity and superiorities of the proposed voltage balancing circuit and control strategy.
机译:有源钳位电路可有效抑制串联连接的绝缘栅双极型晶体管(IGBT)之间的电压不平衡。但是,当有源钳位电路导通时,额外的电流注入IGBT的栅极,栅极电压增加,并且IGBT在有源区工作。因此,长时间导通和有源钳位电路的频繁动作将导致集电极-发射极电压高的IGBT的开关损耗极高,并且串联的IGBT之间的开关损耗失衡严重,从而损害了系统的效率和安全性。 ,特别是在高压IGBT(HV-IGBT)串联应用中。本文针对串联的HV-IGBT,提出了一种具有状态反馈的新型有源钳位电路。高速状态反馈子电路用于将有源钳位电路的工作状态转换为光信号,并将其反馈给控制系统。微控制器根据反馈信号及时调节串联的HV-IGBT驱动信号的接通时间和关断时间,以实现电压平衡,从而抑制有源钳位电路的动作。通过将这种电压平衡方法应用于HV-IGBT串联连接电路,期望电压平衡性能提高,并且期望抑制高开关损耗和严重的开关损耗不平衡。实验结果验证了所提出的电压平衡电路和控制策略的有效性和优越性。

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