A Novel Single-Phase Switched-Capacitor Transformer-less 5-level Inverter Topology with Voltage Boosting

A. Hota, V. Sonti, Sachin Jain, V. Agarwal
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Abstract

Common mode voltage (CMV) is a serious problem in case of grid-tied solar PV multilevel inverter with transformerless implementation. Due to CMV there is flow of leakage current which creates issues like grid current distortion, increased losses, safety issues etc. To address this issue, this paper proposes a novel transformerless inverter with voltage boosting capability and 5-level performance. The proposed inverter topology is based on switched capacitor principle which enables extra level generation and voltage boosting. A 4 quadrant switch is connected across the output terminals to achieve ac decoupling feature in the proposed inverter. A novel PWM strategy is proposed to operate the given topology in such a way that CMV is eliminated entirely. A simulation model is developed in PLECS software to study the performance of the proposed system and justify various claims.
一种新颖的带升压的单相开关电容无变压器五电平逆变器拓扑
共模电压(CMV)是太阳能光伏并网多电平无变压器逆变器的一个重要问题。由于CMV存在漏电流流动,这会产生诸如电网电流失真,损耗增加,安全问题等问题。为了解决这一问题,本文提出了一种具有升压能力和五电平性能的新型无变压器逆变器。所提出的逆变器拓扑结构基于开关电容原理,可以产生额外的电平和升压。在逆变器的输出端连接一个4象限开关以实现交流去耦特性。提出了一种新颖的PWM策略,以完全消除CMV的方式操作给定的拓扑。在PLECS软件中建立了仿真模型,以研究所提出系统的性能并证明各种索赔。
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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