MATLAB-Simulink environment based power quality improvement in photovoltaic system using multilevel inverter

G. Priyanka, J. Surya Kumari, D. Lenine, P. Srinivasa Varma, S. Sneha Madhuri, V. Chandu
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引用次数: 1

Abstract

Introduction. In this world of technical advancement, conventional resources are at the stage of destruction. To avoid such problems, we are going to use an alternative energy source namely solar by photovoltaic effect. The demand for multilevel inverters increased as they are used for different dynamic (high) voltage and dynamic (high) power appliances as they are capable of producing the output wave shape with low total harmonic distortion. Novelty. A new multilevel inverter is used in adding a (bidirectional) two way switch in between the capacitor and a traditional H-bridge module. This produces a better sine wave. By series connection of these two H-bridge modules, nine levels output voltage including zero is possible. The purpose of the proposed topology is reduction in the number of switches and it gives the good result with comparatively less power loss when it is compared with the other normal basic traditional inverters of the same output quality. Methods. In this paper, sinusoidal pulse width modulation technique is used for the working of the switches in the multilevel inverter. The results are verified by using simulation and also experimental setup is done. From the results it is observed that the proposed topology with reduced number of switches gives lower electromagnetic interference, lower harmonic distortion. Practical value. The total harmonic distortion value in the simulation is 14.4 % and practically it is 13.8 %.
基于MATLAB-Simulink环境的多电平逆变器光伏系统电能质量改进
介绍。在这个技术进步的世界里,传统资源正处于被破坏的阶段。为了避免这些问题,我们将使用一种替代能源,即太阳能光伏效应。由于多电平逆变器能够产生低总谐波失真的输出波形,因此它们用于不同的动态(高)电压和动态(高)功率设备,因此对多电平逆变器的需求增加了。新鲜事物。一种新型的多电平逆变器在电容和传统的h桥模块之间增加了一个双向开关。这会产生更好的正弦波。两个h桥模块串联可实现包括零在内的9级输出电压。所提出的拓扑结构的目的是减少开关的数量,并在输出质量相同的情况下,与其他普通的基本传统逆变器相比,它具有相对较小的功率损耗。方法。本文将正弦脉宽调制技术用于多电平逆变器开关的工作。通过仿真验证了结果,并进行了实验设置。结果表明,减少开关数量的拓扑结构具有较低的电磁干扰和谐波畸变。实用价值。仿真中总谐波失真值为14.4%,实际为13.8%。
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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