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Maximum Power Point Tracking for Photovoltaic Optimization Using Ripple-Based Extremum Seeking Control

机译:使用基于纹波的极值搜索控制进行光伏优化的最大功率点跟踪

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摘要

This study develops a maximum power point tracking algorithm that optimizes solar array performance and adapts to rapidly varying irradiance conditions. In particular, a novel extremum seeking (ES) controller that utilizes the natural inverter ripple is designed and tested on a simulated solar array with a grid-tied inverter. The new algorithm is benchmarked against the perturb and observe (PO) method using high-variance irradiance data gathered on a rooftop array experiment in Princeton, NJ. The ES controller achieves efficiencies exceeding 99% with transient rise-time to the maximum power point of less than 0.1 s. It is shown that voltage control is more stable than current control and allows for accurate tracking of faster irradiance transients. The limitations of current control are demonstrated in an example. Finally, the effect of capacitor size on the performance of ripple-based ES control is investigated.
机译:这项研究开发了一种最大功率点跟踪算法,该算法可优化太阳能电池阵列的性能并适应迅速变化的辐照条件。尤其是,在具有并网逆变器的模拟太阳能电池阵列上设计并测试了利用自然逆变器纹波的新型极值搜索(ES)控制器。该新算法使用在新泽西州普林斯顿的屋顶阵列实验中收集的高方差辐照数据,针对摄动和观测(PO)方法进行了基准测试。 ES控制器具有超过99%的效率,并且瞬态上升时间到最大功率点的时间小于0.1 s。结果表明,电压控制比电流控制更稳定,并且可以精确跟踪更​​快的辐照瞬变。实例说明了电流控制的局限性。最后,研究了电容器尺寸对基于纹波的ES控制性能的影响。

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