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A Fast-Converging MPPT Technique for Photovoltaic System Under Fast-Varying Solar Irradiation and Load Resistance

机译:太阳辐射和负载电阻快速变化下的光伏系统快速收敛MPPT技术

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摘要

Under fast-varying solar irradiation and load resistance, a fast-converging maximum power point tracking (MPPT) system is required to ensure the photovoltaic (PV) system response rapidly with minimum power losses. Traditionally, maximum power point (MPP) locus was used to provide such a fast response. However, the algorithm requires extra control loop or intermittent disconnection of the PV module. Hence, this paper proposes a simpler fast-converging MPPT technique, which excludes the extra control loop and intermittent disconnection. In the proposed algorithm, the relationship between the load line and the I-V curve is used with trigonometry rule to obtain the fast response. Results of the simulation and experiment using single-ended primary-inductor converter showed that the response of the proposed algorithm is four times faster than the conventional incremental conductance algorithm during the load and solar irradiation variation. Consequently, the proposed algorithm has higher efficiency.
机译:在太阳辐射和负载电阻快速变化的情况下,需要一个快速收敛的最大功率点跟踪(MPPT)系统,以确保光伏(PV)系统快速响应并以最小的功率损耗实现。传统上,最大功率点(MPP)轨迹用于提供这种快速响应。但是,该算法需要额外的控制回路或PV模块的间歇断开。因此,本文提出了一种更简单的快速收敛的MPPT技术,该技术排除了额外的控制环和间歇性断开。在该算法中,负载线与IV曲线之间的关系与三角法则一起使用以获得快速响应。使用单端初级电感转换器的仿真和实验结果表明,在负载和太阳辐射变化期间,该算法的响应速度是传统增量电导算法的四倍。因此,该算法具有较高的效率。

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