Single-Source Hybrid Boost Multilevel Inverter Topology with Zero-Voltage-Switching Operation

Anurag Priyadarshi, Pratik Kumar Kar, S. Karanki
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Abstract

This paper proposes a single-source boost multilevel inverter topology with inherent voltage balancing feature. The proposed topology is synthesized by a combination of the conventional boost converter and diode-capacitor voltage multiplier circuit (VMC). The diode-capacitor VMC is capable to solve the capacitor voltage balancing problem and step-up the input voltage to the required level of dc link voltage. The proposed converter can provide variable fractional voltage gain, which is a key requirement to achieve the maximum power point (MPP) in a photovoltaic application. Zero-voltage-switching is achieved for the high-frequency switch, which mitigates switching losses. A hardware prototype of the proposed seven-level inverter is developed and the results obtained from the experimental prototype are demonstrated to validate the performance of the proposed converter.
零电压开关操作的单源混合升压多电平逆变器拓扑结构
提出了一种具有固有电压平衡特性的单源升压多电平逆变器拓扑结构。所提出的拓扑结构是由传统升压变换器和二极管-电容电压倍增电路(VMC)的组合合成的。二极管电容VMC能够解决电容电压平衡问题,并将输入电压升压到所需的直流链路电压水平。所提出的转换器可以提供可变分数电压增益,这是光伏应用中实现最大功率点(MPP)的关键要求。高频开关实现了零电压开关,减小了开关损耗。开发了七电平逆变器的硬件样机,并对实验样机的结果进行了验证。
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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