结合跟踪系统和mppt提高光伏发电系统效率综述

S. Udhayakumar, R. Sindhu, R. Srivasthan, Y. Yogaraj
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引用次数: 0

摘要

由于太阳能无污染且储量丰富,因此太阳能的收集正受到越来越多的关注。目前正在进行各种研究和实验,通过改变光伏板的材料、结合跟踪系统和利用最大功率点跟踪(MPPT)算法来提高功率转换效率。传统的刚性固定太阳能电池板限制了它们全天暴露在阳光下的面积。跟踪器的使用增加了面板暴露在太阳直射光束下的面积,从而增加了发电量。MPPT算法跟踪在所有负载下达到的最大功率点,并在该电压下从面板中提取功率。尽管外部环境发生变化,但从面板获得的功率总是最大的。本文综述了各种跟踪方法和MPPT技术,以增加太阳能电池板的能量收集能力,从而提高其效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IMPROVING THE EFFICIENCY OF A PHOTOVOLTAIC SYSTEM BY INCORPORATING TRACKING SYSTEM AND MPPT: A REVIEW
The harvesting of solar energy is gaining increasing attention as it is pollution free and is available in abundance. Various researches and experiments are being carried out to improve the efficiency of power conversion by altering the material of the photovoltaic panels, by incorporating tracking systems and by making use of Maximum Power Point Tracking (MPPT) algorithms. The conventional rigidly fixed solar panels limit their area of exposure to the sun during the entire day. The use of tracker increases the area of panel exposed to direct beam of the sun, thus increasing the power generated. MPPT algorithm tracks the maximum power point attained at all loads and extracts the power from the panel at that voltage. Despite the variations in the external environment, the power obtained from the panel is always maximum. This paper reviews various tracking methods and MPPT techniques to increase the energy harvesting capacity of the panel and in turn improve its efficiency.
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