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A Novel Multilevel Inverter Employing Additive and Subtractive Topology

机译:一种采用加减法拓扑的新型多电平逆变器

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As the demand for high voltage, high power inverters are increasing and there is a problem of connecting a power semiconductor switch directly to a high voltage network. As a part of this the multilevel inverters had been introduced. As a part of this, several researches had been done for the development of multilevel inverters. The commercially available and extensively studied topologies for multilevel voltage output are Neutral Point Clamped (NPC), Cascaded Half Bridge (CHB) and Flying Capacitor (FC) converters. However, with these existing topologies, there is a significant increase in the number of power switches and passive components. Thus it leads to more complex control circuitry and overall cost of the system increase with increase in the output levels. In this paper, a novel multilevel inverter is proposed in which it employs additive and subtractive topology to get higher output levels. This approach significantly reduces the number of power switches needed as compared to existing topology. The present developed multilevel inverter can generate only five voltage levels. With this proposed topology the multilevel inverter can be modified to nine-level inverter. Moreover modified hybrid multicarrier Pulse Width Modulation (PWM) technique can be implemented in the proposed multilevel inverter in order to obtain uniform switch utilization and lower THD. An appropriate modulation scheme is presented and also the proposed concept is analyzed through simulation studies.
机译:随着对高压的需求,大功率逆变器正在增加,并且存在将功率半导体开关直接连接到高压网络的问题。作为其一部分,引入了多电平逆变器。作为其一部分,已经进行了多级逆变器开发的若干研究。用于多电平电压输出的市售和经过广泛研究的拓扑是中性点钳位(NPC),级联半桥(CHB)和飞电容(FC)转换器。但是,利用这些现有拓扑,电源开关和无源组件的数量大大增加。因此,这导致了更复杂的控制电路,并且系统的总成本随着输出水平的增加而增加。本文提出了一种新颖的多电平逆变器,其中采用加法和减法拓扑获得更高的输出电平。与现有拓扑相比,此方法大大减少了所需的电源开关数量。目前开发的多电平逆变器只能产生五个电压电平。利用这种提议的拓扑,可以将多电平逆变器修改为九电平逆变器。此外,可以在所提出的多电平逆变器中实现改进的混合多载波脉宽调制(PWM)技术,以获得均匀的开关利用率和较低的THD。提出了合适的调制方案,并通过仿真研究对提出的概念进行了分析。

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