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Fast Detection of Open Circuit Device Faults and Fault Tolerant Operation of Stacked Multilevel Converters

机译:快速检测开路设备故障和堆叠式多电平转换器的容错操作

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This paper proposes a simple and fast technique for power device open circuit (OC) fault detection in stacked multicell converters (SMCs). A mitigation technique allowing for fault-tolerant operation using a simple front-end routing circuit is also proposed for SMCs. The fault detection concept only needs to sense the voltage and direction of current at the output terminal of the SMC to detect and localize an OC switch fault to a particular rail of the SMC. The proposed technique compares the measured and expected voltage levels considering the commanded switch states and the direction of the terminal current flow. Once an OC fault is detected and localized, the front-end routing circuit will be activated to reconfigure the SMC converter to a simple flying capacitor multilevel converter (FCMC) to maintain the output power flow with a reduced number of voltage levels. A window detector circuit is proposed to track the output voltage level and current direction with high bandwidth. Simulations were performed to validate the fault detection method and router performance. The functionality of windows detector is investigated with a hardware prototype 7 level 300 V SMC.
机译:本文提出了一种简单快速的技术来检测堆叠式多单元转换器(SMC)中的功率器件开路(OC)故障。还为SMC提出了一种缓解技术,该技术可使用简单的前端路由电路实现容错操作。故障检测概念仅需要感测SMC输出端子上的电压和电流方向即可检测OC开关故障并将其定位在SMC的特定电源轨上。所提出的技术在考虑命令的开关状态和端子电流方向的情况下比较测量的电压电平和预期的电压电平。一旦检测到OC故障并将其定位,就将激活前端路由电路,以将SMC转换器重新配置为简单的飞跨电容器多电平转换器(FCMC),以在减少电压电平的情况下保持输出功率流。提出了一种窗口检测器电路来跟踪具有高带宽的输出电压电平和电流方向。进行仿真以验证故障检测方法和路由器性能。使用硬件原型7级300 V SMC对窗口检测器的功能进行了研究。

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