孤岛太阳能光伏系统的爬山优化算法

IF 0.6 Q3 ENGINEERING, MULTIDISCIPLINARY
Muhammad Mateen Afzal Awan, Atif Ullah Khan, Mohammad Umer Siddiqui, Hamid Karim, Muhammad Bux
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引用次数: 0

摘要

由于化石燃料的枯竭、能源价格的飙升、温室气体的排放以及不断增加的能源需求,传统的能源生产技术面临着不可靠的问题。因此,研究人员正在寻找可靠、廉价、环保的可再生能源技术。由于太阳无处不在,直接将太阳光转化为电能的太阳能光伏(PV)技术是最具吸引力的可持续能源。然而,太阳能光伏发电的非线性特性需要最大功率点跟踪(MPPT)来保证最优发电。虽然Hill climb (HC)是一种简单、廉价、高效的MPPT算法,但其缺点是在均匀天气条件下围绕MPP存在稳态振荡。为了克服这一缺点,我们对HC算法的跟踪结构进行了一些修改。提出的优化HC (OHC)算法在不影响传统HC算法强度的情况下实现了零稳态振荡。我们将这两种算法应用于恒定和变化天气条件下的离网光伏系统,结果表明本文提出的OHC算法优于传统的HC算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimized hill climbing algorithm for an islanded solar photovoltaic system
Conventional energy generation technologies face unreliability due to the depletion of fossil fuels, soaring energy prices, greenhouse gas emissions, and continuously increasing energy demand. As a result, researchers are searching for reliable, cheap, and environmentally friendly renewable energy technologies. Solar photovoltaic (PV) technology, which directly converts sunlight into electricity, is the most attractive sustainable energy source due to the sun's ubiquitous presence. However, the non-linear behaviour of solar PV demands maximum power point tracking (MPPT) to ensure optimal power production. Although Hill Climbing (HC) is a simple, cheap, and efficient MPPT algorithm, it has a drawback of steady-state oscillations around MPP under uniform weather conditions. To overcome this weakness, we propose some modifications in the tracking structure of the HC algorithm. The proposed optimized HC (OHC) algorithm achieves zero steady-state oscillations without compromising the strength of the conventional HC algorithm. We applied both algorithms to an off-grid PV system under constant and changing weather conditions, and the results demonstrate the superiority of the proposed OHC algorithm over the conventional HC algorithm.
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