电力电压特性和任何严重部分遮阳条件下的全局最大功率算法

Artur M. S. Furtado, F. Bradaschia, M. Cavalcanti, L. Limongi, G. Azevedo
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引用次数: 8

摘要

传统串并联光伏阵列在部分遮阳条件下的功率-电压曲线呈多峰分布。多峰的存在使得经典的最大功率点跟踪算法失效。因此,需要全局最大功率点(GMPPT)算法来跟踪这些曲线的全局最大功率点(GMPP)。首先,本文对任意PS条件下的串并联阵列的P-V特性进行了统计模拟研究。本研究的贡献是一组GMPP分布特征图形和一组P-V曲线,这些曲线揭示了GMPP两侧功率峰值持续下降的行为是错误的,因为文献中有几篇论文声称这种假设行为用于构建GMPPT算法。此外,由于文献中的几种GMPPT算法也已被构建并进行了简单的测试,因此,本文将比较文献中发现的两种可以在任何PS条件下跟踪GMPP的GMPPT算法。为此,在正常温度和性能参数范围内,对三种串并联阵列的GMPP跟踪算法进行了仿真和实验,并对跟踪时间和电压跟踪进行了评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power voltage characteristics and global mppt algorithms for any severe partial shading condition
The power-voltage curves of conventional series-parallel photovoltaic (PV) arrays under partial shading conditions show multiple peaks. The multiple peaks make the classical algorithms of maximum power point tracking (MPPT) ineffective. Thus, Global MPPT (GMPPT) algorithms are needful to track those curves global maximum power point (GMPP). Initially, this paper presents a statistical simulations study of the P-V characteristics of series-parallel arrays for any PS condition in a range of usual temperatures. This study has as contributions a set of GMPP distribution characteristics graphics and a set of P-V curves that exposes as false the continuously decreasing behavior of the power peaks in both sides of the GMPP, since this hypothetical behavior is claimed by several papers in literature to build GMPPT algorithms. Furthermore, as several GMPPT algorithms in literature have been also built and tested for simple, in a second moment this paper presents a comparative of two GMPPT algorithms found in literature that can track the GMPP in any PS condition. For this, simulations and experiments of these algorithms tracking the GMPP of three series-parallel arrays are carried for several severe PS condition in a range of usual temperatures and performance parameters as tracking time and voltage track are evaluated.
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