A review of optimization of control strategies for non-linear input solar PV system

Rahangdale Roshni, Sahare Deeksha
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Abstract

In recent years, solar photovoltaic (PV) units have rapidly grown to become a major contributor to the installed generating capacity worldwide. However, the intermittent and fluctuating nature of renewable generation can negatively impact power quality and generating units. The backbone of these problems is often related to the control system of the entire network. In a solar-based generation, extracting maximum power known as Maximum Power Point Tracking (MPPT), is a major challenge due to its dependence on climatic conditions and location. This research aims to review the steps taken to enhance output by using different control systems for maximum power point extraction and to achieve optimization in the control system technique, resulting in the best output of any location's current solar radiation scenario.
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非线性输入太阳能光伏系统控制策略优化研究进展
近年来,太阳能光伏发电(PV)装置迅速发展,成为全球发电装机容量的主要贡献者。然而,可再生能源发电的间歇性和波动性会对电力质量和发电机组产生负面影响。这些问题的骨干往往关系到整个网络的控制系统。在太阳能发电中,由于其依赖于气候条件和位置,提取最大功率(称为最大功率点跟踪(MPPT))是一项重大挑战。本研究旨在回顾通过使用不同的控制系统来提高输出功率点提取的步骤,并实现控制系统技术的优化,从而在任何位置的当前太阳辐射情况下获得最佳输出。
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