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New Generalized Multilevel Current-Source PWM Inverter with No-Isolated Switching Devices

机译:具有无隔离开关装置的新型广义多级电流源PWM逆变器

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The paper proposes a generalized circuit configuration of a new multilevel current-source inverter (CSI) with no-isolated switching devices. In this new multilevel inverter topology, all of the power-switches in the inverter are connected on a common-potential level. Hence, all of the power switches only need a single gate drive power supply without using isolated power supplies or conventional bootstrap techniques. This key feature is still valid even if the number of the power switches increases due to the higher number of the output current waveform levels. As a result, complexity of the gate drive circuit can be remarkably moderated. In addition, the multilevel CSI circuit is capable to operate at high switching frequency if required, because all of the power switches are connected on the common potential level. Five-level PWM inverter configuration, including its chopper circuit as DC current-power source circuits using small input inductors, is verified through computer simulations and experimental tests. The results show feasibility of the proposed topology with reducing the circuit complexity and physical size of the multilevel CSIs.
机译:本文提出了具有无隔离开关装置的新型多电流电流源逆变器(CSI)的广义电路配置。在这种新的多级逆变器拓扑中,逆变器中的所有电源开关都连接在常见电位上。因此,所有电源开关只需要单个栅极驱动电源而不使用隔离电源或传统的引导技术。即使电源开关的数量因输出电流波形水平越多而增加,该键特征也仍然有效。结果,栅极驱动电路的复杂性可以显着地调节。另外,如果需要,多级CSI电路能够以高开关频率运行,因为所有电源开关都连接在常见的电位上。五级PWM逆变器配置,包括使用小型输入电感器的DC电流电源电路的斩波电路,通过计算机模拟和实验测试验证。结果表明,提出拓扑的可行性,降低了多级CSIS的电路复杂性和物理尺寸。

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