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Flying-capacitor-based chopper circuit for DC capacitor voltage balancing in diode-clamped multilevel inverter

机译:用于二极管钳位多电平逆变器中直流电容器电压平衡的基于飞电容器的斩波电路

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摘要

This paper proposes a flying-capacitor-based chopper circuit for dc capacitor voltage equalization in diode-clamped multilevel inverters. Its important features are reduced voltage stress across the chopper switches, possible reduction in the chopper switching frequency, improved reliability, and ride-through capability enhancement. This topology is analyzed using three- and four-level flying-capacitor-based chopper circuit configurations. These configurations are different in capacitor and semiconductor device count and correspondingly reduce the device voltage stresses by half and one-third, respectively. The detailed working principles and control schemes for these circuits are presented. It is shown that, by preferentially selecting the available chopper switch states, the dc-link capacitor voltages can be efficiently equalized in addition to having tightly regulated flying-capacitor voltages around their references. The various operating modes of the chopper are described along with their preferential selection logic to achieve the desired performances. The performance of the proposed chopper and corresponding control schemes are confirmed through both simulation and experimental investigations.
机译:本文提出了一种基于飞电容的斩波电路,用于二极管钳位多电平逆变器中的直流电容器电压均衡。它的重要功能是降低斩波器开关两端的电压应力,可能降低斩波器开关频率,提高可靠性并增强穿越能力。使用基于三级和四级飞电容的斩波电路配置来分析此拓扑。这些配置的电容器和半导体器件数量不同,并且分别将器件电压应力降低了一半和三分之一。给出了这些电路的详细工作原理和控制方案。结果表明,通过优先选择可用的斩波器开关状态,除了在参考电压周围具有严格调节的飞跨电容器电压外,还可以有效地均衡直流链路电容器电压。描述了斩波器的各种工作模式及其优先选择逻辑,以实现所需的性能。通过仿真和实验研究,证实了所提出的斩波器的性能和相应的控制方案。

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