电容电压平衡在多电平逆变器中的意义

Preeti Kushawaha, V. Rupapara, P. Shah
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引用次数: 1

摘要

在最近的趋势中,由于与常规逆变器相比,多电平逆变器具有良好的性能,因此其使用量正在迅速增加。介绍了嵌套中性点箝位多电平逆变器(NNPC)的性能。NNPC是一种混合型多电平干涉器,它是中性点箝位(NPC)和飞行电容(FC)两种经典拓扑结构的组合。由于这种混合逆变器在其配置中涉及电容器,因此它们是电容器电压平衡(CVB)的问题。因此,为了获得完美的四电平输出,必须在飞行电容器之间保持Vdc/3电压[8]。因此,在MATLAB Simulink中,采用无电容电压平衡控制的简单脉冲触发,观察了嵌套中性点箝位多电平逆变器的性能,并对其进行了电容电压平衡控制的仿真,进一步在MATLAB Simulink中采用移电平正弦脉宽调制技术(相位配置)和电容电压平衡控制技术实现了嵌套中性点箝位多电平逆变器的性能分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Significance of Capacitor Voltage Balancing in Multilevel Inverter
In the recent trends, the use of multilevel inverter is rapidly increasing due to its good performance compared to conventional inverter. In this paper, the performance of Nested Neutral Point Clamped Multilevel inverter (NNPC) is presented. NNPC is a Hybrid type of Multilevel inerter which is nothing but the combination of two classical topologies that are Neutral Point Clamped(NPC) and Flying Capacitor(FC). As this Hybrid inverter involves Capacitor in its configuration therefore, their is an issue of Capacitor Voltage Balancing(CVB). Hence the necessary condition arises that is to maintain Vdc/3 voltage across Flying capacitors inorder to obtain perfect four level output[8]. Hence the performance of Nested Neutral Point Clamped Multilevel Inverter is observed in MATLAB Simulink by using simple pulse triggering without Capacitor Voltage Balance control and its simulation is also done with capacitor voltage balancing control, further its performance is also analysed by implementing it with level-shift Sinusoidal Pulse Width Modulation technique(Phase-Disposition) with capacitor voltage balancing control technique in MATLAB simulink.
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