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Impact of partial shading on the output power of PV systems under partial shading conditions

机译:部分遮蔽条件下部分遮蔽对光伏系统输出功率的影响

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摘要

A major challenge in the photovoltaics (PV) systems is to make it energy efficient. Partial shading reduces the energy yield of PV systems and introduces multiple peaks in the P-V characteristics. The maximum power point trackers (MPPTs) work in conjunction with the boost converter and track the global peak in the P-V characteristics. The boost converter used for MPPT is generally designed to operate with high efficiency at the maximum power point (MPP) voltage of the array by assuming a single peak power point on the P-V characteristics. However, the efficiency of the boost converter varies with the input voltage, and the MPP of the load when the converter efficiency is considered is different from the MPP of the PV array. Since the maximisation of power in the load is ultimately desirable, this study focuses on the maximisation of power to the load. The power transferred to load under different shading patterns is analysed and the results of the study are demonstrated through simulation and experimental results.
机译:光伏(PV)系统的主要挑战是使其节能。部分遮挡降低了PV系统的能量产量,并在P-V特性中引入了多个峰值。最大功率点跟踪器(MPPT)与升压转换器配合工作,并跟踪P-V特性中的全局峰值。用于MPPT的升压转换器通常设计为通过在P-V特性上假设单个峰值功率点,在阵列的最大功率点(MPP)电压下高效工作。然而,升压转换器的效率随输入电压而变化,并且当考虑转换器效率时,负载的MPP与PV阵列的MPP不同。由于最终需要最大化负载中的功率,因此本研究着重于负载中功率的最大化。分析了在不同阴影模式下传递到负载的功率,并通过仿真和实验结果证明了研究结果。

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    《Power Electronics, IET》 |2014年第3期|657-666|共10页
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