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A Maximum Power Point Tracking Technique for PV Under Partial Shading Condition

机译:部分遮蔽条件下光伏电池的最大功率点跟踪技术

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Tracking the Maximum Power Point (MPP) of Photovoltaic (PV) modules is very important to increase the utilization efficiency. Under partially shading conditions, the P-V curve shows multiple peaks; therefore, the function of the Maximum Power Point Tracking (MPPT) techniques are to track the global power point and avoid operation at the local peaks. One of the most effective methods especially in partial shading conditions is Fuzzy Logic Control (FLC) technique. This paper presents a design of the FLC based MPPT in addition to the scanning system that can differentiate between the global and local MPPs and tracks the global one. The system is formed from a PV array coupled with a DC microgrid through a boost converter. Simulation results are provided using MATLAB/SIMULINK to evaluate the performance of the used MPPT method to track the global power point under various partial shading patterns.
机译:跟踪光伏(PV)模块的最大功率点(MPP)对于提高利用率非常重要。在部分阴影条件下,P-V曲线显示多个峰;因此,最大功率点跟踪(MPPT)技术的功能是跟踪全局功率点并避免在局部峰值处运行。尤其是在部分阴影条件下,最有效的方法之一是模糊逻辑控制(FLC)技术。除了可以区分全局MPP和本地MPP并跟踪全局MPP的扫描系统之外,本文还介绍了基于FLC的MPPT的设计。该系统由通过升压转换器与直流微电网耦合的PV阵列组成。使用MATLAB / SIMULINK提供了仿真结果,以评估所使用的MPPT方法在各种局部阴影模式下跟踪全局功率点的性能。

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