Low Reverse Recovery Stress in High Power Converters achieved by Self-Resetting Saturable Reactors

H. Gruening, K. Koyanagi, M. Mukunoki
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引用次数: 1

Abstract

A clamp circuit using non-linear reactors is proposed for the application with high power inverters. For stable inverter operation under all typical operation conditions the cores receive self-resetting characteristics by implementation of a base inductance value in the non-saturated state through air-gap or inductor paralleling. Various circuit configurations investigated by a 6 kA-6 kV-GCT chopper setup are compared to a traditional clamp using a linear anode reactor. New simulation models developed for the cores and diodes are tuned by the experimental results and applied to investigate 2-level and 3-level circuits. Using self-resetting saturable reactors, low freewheel diode reverse recovery stress is achieved especially at small load current even at a very high value of dl/dt.
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利用自复位饱和电抗器实现高功率变换器的低反向恢复应力
提出了一种应用于大功率逆变器的非线性电抗器钳位电路。为了使逆变器在所有典型运行条件下稳定运行,铁芯通过气隙或电感并联在非饱和状态下实现基极电感值,从而获得自复位特性。通过6 kA-6 kV-GCT斩波装置研究了各种电路配置,并将其与使用线性阳极电抗器的传统箝位进行了比较。根据实验结果调整了核和二极管的新仿真模型,并应用于2电平和3电平电路的研究。使用自复位饱和电抗器,即使在非常高的dl/dt值下,也可以在小负载电流下实现低自由轮二极管反向恢复应力。
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