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A fault-tolerant modular multilevel inverter topology

机译:容错模块化多电平逆变器拓扑

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Multilevel inverter topologies have received an increasing importance for their modular structures with better integration of renewable energy sources and reduced filtering requirements. But reliability is compromised in the process of decreasing the number of switches to produce the maximum number of voltage levels. This paper elevates a single-phase fault-tolerant inverter topology, which is modular in structure. The proposed inverter is analyzed for open- or short-circuit faults in sources and open-circuit faults in switches. Sine Pulse Width Modulation with multicarriers technique is used to control the circuit. The carrier signals are reconfigured under fault conditions based on levels to be generated by bypassing the faulted switch or source. The circuit is simulated in MATLAB/SIMULINK, and experimental setup is developed to claim the fault tolerance of proposed inverter.
机译:通过更好地集成可再生能源和降低过滤要求,多级逆变器拓扑已越来越重视其模块化结构。但是,在减少开关数量以产生最大数量的电压电平的过程中,可靠性受到了损害。本文提出了一种模块化的单相容错逆变器拓扑。分析提出的逆变器是否存在电源中的开路或短路故障以及开关中的开路故障。使用多载波正弦脉冲宽度调制技术来控制电路。在故障条件下,将根据旁路故障开关或源所产生的电平来重新配置载波信号。在MATLAB / SIMULINK中对电路进行了仿真,并开发了实验装置以证明所提议逆变器的容错能力。

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