一种新的光伏阵列最大功率点跟踪技术仿真

A. Bazzi, S. Karaki
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引用次数: 25

摘要

本文介绍了一种新的两级最大功率点跟踪(MPPT)技术,用于在不同辐照度和温度下工作的多个光伏阵列。这种情况下的变化可能导致阵列整体功率-电流(P-I)曲线出现几个局部最大值。该技术旨在定位互连阵列的P-I曲线上的全局最大功率点(MPP),从而绕过可能捕获可用单级MPPT算法的任何局部最大功率点。所提出的技术的第一阶段找到一个绕过局部最大值的点,并将PV阵列的工作点移动到全局MPP附近。第二阶段是正常的MPPT技术,它找到确切的全局最大值。在Simulink中对两个串联光伏阵列、一个电池负载以及所提出的技术进行了仿真。验证了所提出的两阶段技术的运行,第二阶段是ldquoperturb和观测器dquo算法(P&O)或纹波相关控制(RCC)。该技术的效率在95%左右,在极端工况下的收敛时间为11 ms。与单阶段技术和其他两阶段技术相比,该技术具有很强的竞争力、准确性和快速性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of a new maximum power point tracking technique for multiple photovoltaic arrays
This paper introduces a new two-stage maximum power point tracking (MPPT) technique for multiple photovoltaic arrays operating under different levels of irradiance and temperature. The variations in such conditions could cause several local maxima on the overall power-current (P-I) curve of the arrays. This technique aims to locate the global maximum power point (MPP) on the P-I curve of the interconnected arrays thus bypassing any local maximum that might trap available single-stage MPPT algorithms. The first stage of the proposed technique finds a point that bypasses local maxima and moves the operating point of the PV arrays near the global MPP. The second stage is a normal MPPT technique that finds the exact global maximum. A system of two series PV arrays, a battery load, and the proposed technique were simulated in Simulink. The operation of the proposed two-stage technique is verified with the second stage being either the ldquoperturb and observerdquo algorithm (P&O) or the ripple correlation control (RCC). The efficiency of the technique is around 95% and its convergence time is 11 ms under extreme changes in the operating conditions. Compared to single stage techniques and other two stage techniques, this technique is shown to be very competitive, accurate, and fast.
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