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A Variable Step Maximum Power Point Tracking Method Using Taylor Mean Value Theorem

机译:泰勒中值定理的变步长最大功率点跟踪方法

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Photovoltaic power generation systems are vulnerable to weather, resulting in a decline in power generation efficiency. Therefore, it is necessary to use maximum power point tracking technology. This paper proposes a novel variable step size maximum power point tracking algorithm through analysising the photovoltaic power generation model and comparing the commonly used algorithms, such as the constant-voltage method, the perturb-and-observe method, the incremental conductance method. The step size is determined by the forecast of the slope of the PV array power curve and convergence speed can be adjusted. Results of simulation show that the method can fast tracke to the maximum power point, and there is no oscillation at the maximum power point in theory. The maximum error power between the power tracked and the actual maximum power depends only on the number with minimum absolute value that the system can process.
机译:光伏发电系统易受天气影响,导致发电效率下降。因此,有必要使用最大功率点跟踪技术。通过分析光伏发电模型并比较常用的恒压法,扰动观察法,增量电导法,提出了一种变步长最大功率点跟踪算法。步长取决于光伏阵列功率曲线的斜率预测值,并且可以调整收敛速度。仿真结果表明,该方法可以快速跟踪到最大功率点,理论上在最大功率点上没有振荡。跟踪功率与实际最大功率之间的最大误差功率仅取决于系统可处理的具有最小绝对值的数字。

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