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A New Technique for Tracking the Global Maximum Power Point of PV Arrays Operating Under Partial-Shading Conditions

机译:跟踪在部分阴影条件下运行的光伏阵列的全局最大功率点的新技术

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摘要

The power–voltage characteristic of photovoltaic (PV) arrays operating under partial-shading conditions exhibits multiple local maximum power points (MPPs). In this paper, a new method to track the global MPP is presented, which is based on controlling a dc/dc converter connected at the PV array output, such that it behaves as a constant input-power load. The proposed method has the advantage that it can be applied in either stand-alone or grid-connected PV systems comprising PV arrays with unknown electrical characteristics and does not require knowledge about the PV modules configuration within the PV array. The experimental results verify that the proposed global MPP method guarantees convergence to the global MPP under any partial-shading conditions. Compared with past-proposed methods, the global MPP tracking process is accomplished after far fewer PV array power perturbation steps.
机译:在部分阴影条件下运行的光伏(PV)阵列的功率电压特性表现出多个局部最大功率点(MPP)。在本文中,提出了一种跟踪全局MPP的新方法,该方法基于控制连接到PV阵列输出的dc / dc转换器,使其表现为恒定的输入功率负载。所提出的方法的优点在于,它可以被应用于包括具有未知电特性的PV阵列的独立的或并网的PV系统中,并且不需要关于PV阵列内的PV模块配置的知识。实验结果证明,提出的全局MPP方法可以保证在任何局部阴影条件下收敛到全局MPP。与过去提出的方法相比,全局MPP跟踪过程是在极少的PV阵列功率扰动步骤后完成的。

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