A novel approach for maximum power point tracking of a PV generator with partial shading

F. Kazan, S. Karaki, R. Jabr
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引用次数: 5

Abstract

This paper presents a novel two-stage approach for tracking the maximum power point (MPP) of a large photovoltaic (PV) generator under non-uniform irradiance. The non-uniform irradiance in large PV arrays is attributed to partially shaded PV modules and may significantly increase the complexity of the MPP tracking problem. In Stage 1, the method makes use of real-time irradiance measurements in certain regions of the generator to estimate the power versus voltage (P-V) curve and to deduce an estimate of the global peak region. This is followed in Stage 2 by a single peak tracking approach starting at the estimated global peak, which combines ripple correlation and incremental conductance, to accurately locate the exact global power point. The system consists of a PV generator, with pyranometers distributed across it, a DC-DC converter feeding a battery, and a controller implementing the tracking algorithm. The system simulation model was developed in MATLAB, taking into consideration the implementation of bypass and blocked diodes together with the pyranometer irradiance inputs. The paper first presents a modeling and simulation scheme suitable for studying the I-V and P-V characteristic curves of a PV array with partial shading configuration given the exact irradiance values. This is followed by a method of global peak region estimation knowing the location and readings of the distributed pyranometers. Tracking results of the two-staged approach are demonstrated under various shading configuration cases.
一种局部遮阳光伏发电机最大功率点跟踪的新方法
提出了一种新的两阶段跟踪非均匀辐照下大型光伏发电机组最大功率点(MPP)的方法。大型光伏阵列中的辐照度不均匀是由部分遮挡的光伏组件造成的,这可能会显著增加MPP跟踪问题的复杂性。在第一阶段,该方法利用发电机某些区域的实时辐照度测量来估计功率与电压(P-V)曲线,并推断出全球峰值区域的估计。随后在阶段2中,从估计的全局峰值开始采用单峰跟踪方法,该方法结合纹波相关和增量电导,以准确定位确切的全局功率点。该系统由一个PV发电机组成,其中分布着热辐射计,一个DC-DC转换器为电池供电,以及一个实现跟踪算法的控制器。在MATLAB中开发了系统仿真模型,考虑了旁路和阻塞二极管的实现以及高强计辐照度输入。本文首先提出了一种建模和仿真方案,适用于在给定确切辐照度值的情况下,研究具有部分遮阳结构的光伏阵列的I-V和P-V特性曲线。这是随后的全球峰区域估计的方法,知道的位置和读数的分布烈日。两阶段方法的跟踪结果在各种遮阳配置情况下进行了演示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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