Investigation of efficient multilevel inverter for photovoltaic energy system and electric vehicle applications

E. Parimalasundar, R. Jayanthi, K. Suresh, R. Sindhuja
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引用次数: 4

Abstract

Introduction. This research presents a simple single-phase pulse-width modulated 7-level inverter topology for renewable system which allows home-grid applications with electric vehicle charging. Although multilevel inverters have appealing qualities, their vast range of application is limited by the use of more switches in the traditional arrangement. As a result, a novel symmetrical 7-level inverter is proposed, which has the fewest number of unidirectional switches with gate circuits, providing the lowest switching losses, conduction losses, total harmonic distortion and higher efficiency than conventional topology. The novelty of the proposed work consists of a novel modular inverter structure for photovoltaic energy system and electric vehicle applications with fewer numbers of switches and compact in size. Purpose. The proposed system aims to reduce switch count, overall harmonic distortions, and power loss. There are no passive filters required, and the constituted optimizes power quality by producing distortion-free sinusoidal output voltage as the level count increases while reducing power losses. Methods. The proposed topology is implemented with MATLAB/Simulink, using gating pulses and various pulse-width modulation methodologies. Moreover, the proposed model also has been validated and compared to the hardware system. Results. Total harmonic distortion, number of power switches, output voltage, current, power losses and number of DC sources are investigated with conventional topology. Practical value. The proposed topology has proven to be extremely beneficial for implementing photovoltaic-based stand-alone multilevel inverter and electric vehicle charging applications.
用于光伏能源系统和电动汽车的高效多电平逆变器研究
介绍。本研究提出了一种简单的单相脉宽调制7电平逆变器拓扑结构,用于可再生能源系统,允许家庭电网应用于电动汽车充电。尽管多电平逆变器具有吸引人的特性,但传统的开关配置限制了其广泛的应用范围。因此,提出了一种新型对称7电平逆变器,它具有最少的单向开关和门电路,提供最低的开关损耗、导通损耗、总谐波畸变和比传统拓扑更高的效率。这项工作的新颖之处在于,它采用了一种新颖的模块化逆变器结构,用于光伏能源系统和电动汽车应用,开关数量少,体积小。目的。该系统旨在减少开关计数、整体谐波失真和功率损耗。不需要无源滤波器,并且随着电平计数的增加,该结构通过产生无失真的正弦输出电压来优化电能质量,同时降低了功率损耗。方法。所提出的拓扑是用MATLAB/Simulink实现的,使用门控脉冲和各种脉宽调制方法。此外,所提出的模型也经过了验证,并与硬件系统进行了对比。结果。用传统拓扑研究了总谐波畸变、功率开关数目、输出电压、电流、功率损耗和直流电源数目。实用价值。所提出的拓扑结构已被证明对实现基于光伏的独立多电平逆变器和电动汽车充电应用非常有益。
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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