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Fault-tolerant control for neutral-point-clamped converter based on a fourth asymmetric leg

机译:基于第四不对称腿的中性点夹紧转换器的容错控制

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摘要

A new fault-tolerant four-legged three-level topology for the neutral-point-clamped (NPC) converter by adding an additional two-level leg is proposed in this paper. And the corresponding fault-tolerant control strategy on the basis of SVPWM control is also presented. Under normal operation mode, the fourth leg can help in removing the low-frequency NP voltage fluctuation of converters. While an open-circuit or short-circuit failure of power switches for the converter occurring, three different fault-tolerant solutions and a novel asymmetric modulation strategy based on SVPWM are applied to guarantee the safe operation of converters. These proposed solutions are focused on not only endowing the system with fault-tolerant ability, but also improving the transient performance of the system during fault reconfiguration. Simulation results validate the proposed fault-tolerant control strategy and scheme.
机译:本文提出了通过添加额外的两级腿的中性点钳位(NPC)转换器的新容错四维三级拓扑。还提出了基于SVPWM控制的相应容错控制策略。在正常操作模式下,第四条腿可以帮助去除转换器的低频NP电压波动。虽然发生转换器的电源开关的开路或短路故障,但应用了三种不同的容错解决方案和基于SVPWM的新型不对称调制策略,以保证转换器的安全操作。这些提出的解决方案不仅赋予了具有容错能力的系统,而且还提高了在故障重新配置期间改善了系统的瞬态性能。仿真结果验证了所提出的容错控制策略和方案。

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