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Fault detection and tolerant control of open-circuit failure in MMC with full-bridge sub-modules

机译:具有全桥子模块的MMC中的开路故障的故障检测和容错控制

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Modular multilevel converter (MMC) has drawn tremendous attention in the academia and industry since its invention, and it is considered as a very suitable solution for the high-power applications. It is usually composited by a large number of half-bridge or full-bridge sub-modules (SMs), which makes the reliability as one of the most important challenges for MMC. Besides, due to the DC side short-circuit blocking and ride-through capability, MMC with full-bridge SMs is very competitive and will be widely used in the future. Considering the IGBT open-circuit failure in MMC with full-bridge SMs, the fault features are analyzed in detail in this paper. Then a complete set of fault detection and tolerant control strategy is proposed. Firstly, the IGBT open-circuit fault is detected based on two sliding mode observers for the circulating current and the output current, respectively. Secondly, a tolerance period is inserted immediately to make the transient process smooth. Thirdly, the failed SM is localized through comparing all the capacitors' voltages. Finally, the failed SM is bypassed and the other healthy SMs are reconfigured to realize the continuous operation. The feasibility and effectiveness of the proposed fault detection and tolerant control strategy have been confirmed through the simulations in MATLAB/Simulink.
机译:自从其发明以来,模块化多电平转换器(MMC)在学术界和工业界引起了极大的关注,并且被认为是非常适合大功率应用的解决方案。它通常由大量的半桥或全桥子模块(SM)组合而成,这使可靠性成为MMC面临的最重要挑战之一。此外,由于具有直流侧短路阻断和穿越能力,带有全桥SM的MMC具有很强的竞争力,并将在未来得到广泛应用。考虑到具有全桥SM的MMC中IGBT的开路故障,本文详细分析了故障特征。然后提出了一套完整的故障检测与容错控制策略。首先,基于两个滑模观测器分别检测循环电流和输出电流,以检测IGBT开路故障。其次,立即插入一个公差周期以使过渡过程平稳。第三,通过比较所有电容器的电压来定位故障SM。最后,绕过故障的SM,并重新配置其他运行状况良好的SM,以实现连续运行。通过MATLAB / Simulink中的仿真,已证实了所提出的故障检测和容错控制策略的可行性和有效性。

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