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A MPPT control strategy of solar power systems for low irradiance conditions

机译:低辐照条件太阳能系统的MPPT控制策略

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A novel algorithm for maximum power point tracking (MPPT) in solar power-generating systems was proposed and compared with the conventional methods of hill climbing, perturbation and observation, and incremental conductance. The three conventional algorithms are prone to divergence under low irradiance levels (<;150W/m), resulting in MPPT difficulties. This study proposed a new MPPT technique based on the relationship between the sun and the horizon, and also circumvented the drawbacks of conventional MPPT algorithms. The proposed algorithm facilitated quick and precise convergence at the maximum power point for a photovoltaic module under a low irradiance level of 100W/m. Comparisons of the proposed and conventional hill climbing algorithms were conducted for irradiance levels of 650, 500, 250, and 100 W/m, and the proposed algorithm yielded consistently more favorable results than did the conventional hill climbing algorithm.
机译:提出了一种用于太阳能发电系统中的最大功率点跟踪(MPPT)的新型算法,并与爬山,扰动和观察的传统方法进行比较,以及增量电导。在低辐照度水平(<150W / m)下,三种常规算法易于发散,导致MPPT困难。本研究提出了一种基于太阳与地平线之间的关系的新的MPPT技术,并且还规避了传统MPPT算法的缺点。所提出的算法在低辐照度水平为100W / m的低辐照度水平下,在光伏模块的最大功率点处促进了快速精确的收敛性。对于辐照度水平为650,500,250和100 w / m的辐照度水平进行了比较,并且所提出的算法始终如一,比传统的山爬算法始终如一的效果。

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