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Open-circuit fault diagnosis of switching devices in a modular multilevel converter with distributed control

机译:具有分布式控制的模块化多电平转换器中开关设备的开路故障诊断

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Fault tolerant operation can significantly improve the reliability of a Modular Multilevel Converter (MMC), but the precondition is that a fast and accurate fault detection and localization method has been embedded into the MMC control system. This paper proposes a fault diagnosis method used in a distributed control architecture, which makes the local controllers capable of identifying the switching devices in open-circuit fault. Instead of using capacitor voltage, sub-module terminal voltage is measured for capacitor voltage control and fault diagnosis according to different sampling instances. The proposed fault diagnosis based on real-time measurements rather than a complicated algorithm can identify the faulty switches in a few sampling intervals, which is suitable for MMC systems with a large number of sub-modules and distributed control. The multiple switching device faults in different sub-modules can be identified by local controllers independently. Experimental results show that the proposed fault diagnosis method is able to locate faulty switches within 3ms and also immune from false alarms.
机译:容错操作可以显着提高模块化多电平转换器(MMC)的可靠性,但前提是必须将快速,准确的故障检测和定位方法嵌入到MMC控制系统中。本文提出了一种用于分布式控制体系结构的故障诊断方法,该方法使本地控制器能够识别开路故障中的开关设备。代替使用电容器电压,而是根据不同的采样情况来测量子模块端子电压,以进行电容器电压控制和故障诊断。提出的基于实时测量而不是复杂算法的故障诊断可以在几个采样间隔内识别出故障开关,这适用于具有大量子模块和分布式控制的MMC系统。不同子模块中的多个开关设备故障可以由本地控制器独立识别。实验结果表明,所提出的故障诊断方法能够在3ms内定位故障开关,并且能够避免误报。

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