Comparison of capacitor voltage balancing techniques in multilevel inverters

K. S. Gayathri Devi, S. Arun, C. Sreeja
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引用次数: 2

Abstract

The diode-clamped multilevel topology has the problem of voltage unbalance of dc link capacitors. This problem can be solved by different methods such as using separate dc sources instead of dc link capacitors, or adding auxiliary circuits to the conventional diode clamped inverter or adopting space vector modulation control, up to three-level inverter applications. For more level applications, the use of separate dc sources is not viable and the control techniques for other two methods will be more complicated to implement. Hence the Hybrid Multilevel Inverter Based on Switched-capacitor and Diode-clamped units can be used for higher levels. This topology can balance the capacitor voltage and also boost the terminal voltage in the output with the help of switched capacitor converter. The boosting of output voltage reduces the transformation ratio of the input transformer or avoids it in low power applications, thereby reducing the cost and design complication of converters. The simulation of this topology is done using MAT lab simulink software and compared with other voltage balancing techniques.
多电平逆变器中电容电压平衡技术的比较
二极管箝位多电平拓扑存在直流链路电容电压不平衡的问题。这个问题可以通过不同的方法来解决,例如使用单独的直流电源代替直流链路电容器,或在传统的二极管箝位逆变器中添加辅助电路或采用空间矢量调制控制,最多可用于三电平逆变器应用。对于更高电平的应用,使用单独的直流电源是不可行的,另外两种方法的控制技术将更加复杂的实现。因此,基于开关电容和二极管箝位单元的混合多电平逆变器可以用于更高的电平。这种拓扑结构可以平衡电容器电压,也可以在开关电容变换器的帮助下提高输出端的电压。在低功率应用中,输出电压的升压降低或避免了输入变压器的变换器比,从而降低了变换器的成本和设计复杂性。利用MAT lab simulink软件对该拓扑结构进行了仿真,并与其他电压平衡技术进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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