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A reliable and efficient single-phase modular multilevel inverter topology

机译:可靠高效的单相模块化多电平逆变器拓扑

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Bilevel inverters are replaced by multilevel inverters due to their capability of producing quality output voltage with low total harmonic distortion (THD). On the contrary, increase in number of semiconductor switches has questioned the reliability of the multilevel inverter topologies. To enhance the reliability, this paper proposes a single-phase five-level inverter topology with inherent fault-tolerant feature. The proposed inverter can sustain faults in sources and semiconductor switches by amending the switching combinations. No healthy switch is needed to be bypassed during the fault to ensure the optimum utilization of the switches. An analysis on the basis of reliability, cost, and efficiency is carried out of the proposed inverter and compared with the existing topologies. To prove the claim, the experimental results of the developed hardware model is analyzed and compared with the simulation results of MATLAB/SIMULINK.
机译:由于双电平逆变器能够产生高质量的输出电压且总谐波失真(THD)低,因此被多电平逆变器取代。相反,半导体开关数量的增加对多电平逆变器拓扑的可靠性提出了质疑。为了提高可靠性,本文提出了一种具有固有容错功能的单相五电平逆变器拓扑。提出的逆变器可以通过修改开关组合来维持源和半导体开关中的故障。故障期间无需旁路任何正常的开关,以确保开关的最佳利用。对所提出的逆变器进行了可靠性,成本和效率的分析,并与现有拓扑进行了比较。为了证明这一要求,分析了开发的硬件模型的实验结果,并将其与MATLAB / SIMULINK的仿真结果进行了比较。

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