基于进化计算的光伏系统多电平h桥级联逆变器

J. Kumari, C. Babu, D. Lenine
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引用次数: 5

摘要

近年来,能源需求的增加以及化石燃料因其环境污染和未来短缺而产生的问题,导致技术的发展需要使用无污染的替代能源,如太阳能和风能。不断增长的需求,半导体技术和磁性材料(如高频电感磁芯)的进步,对光伏逆变器拓扑结构及其效率,控制电路的改进以及降低成本的潜力产生了重大影响。用户自然希望通过持续利用阵列的最大可用太阳能,以最高的能量转换输出来操作光伏(PV)阵列。电力系统光伏组件由太阳能阵列供电,由于太阳能发电的性质不同,天气条件的不可预测和突然变化会改变太阳辐照水平以及电池的工作温度,因此需要特殊的设计考虑。本文提出了一种基于进化计算的光伏系统多电平h桥级联逆变器,该逆变器采用简单的PWM技术,具有低频开关和降低总谐波畸变的优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evolutionary Computing Based Multilevel H-bridge Cascaded Inverter with Photovoltaic System
In recent years, the increase of energy demand and the problems of fossil-fuel sources due to their environmental pollution and future shortages, have led to the development of technologies need to use non-polluting alternative energy sources such as solar and wind sources. Growing demand, advancements in semiconductor technology and magnetic materials such as high frequency inductor cores, has a significant impact on PV inverter topologies and their efficiencies, on the improvement of the control circuits on the potential of costs reduction. The user naturally wants to operate the Photovoltaic (PV) array at its highest energy conversion output by continuously utilizing the maximum available solar power of the array. The electrical system PV modules are powered by solar arrays requires special design considerations due to varying nature of the solar power generated resulting from unpredictable and sudden changes in weather conditions which change the solar irradiation level as well as the cell operating temperature. This work proposes on Evolutionary computing Based Multilevel H-Bridge Cascaded Inverter for Photovoltaic System with simple PWM Technique, to have the advantages of low frequency switching and reduced total harmonic distortion (THD).
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