部分遮阳条件下基于软计算的太阳能电池充电器MPPT控制器

M. Neethu, R. Senthilkumar
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引用次数: 4

摘要

光伏板接收到的太阳辐射被移动或不移动的物体阻挡,称为部分遮阳条件。只有当面板电压保持在全局最大功率点时,部分阴影下的太阳能电池板输出功率才会达到最大值。GMPP可由部分遮阳太阳能板的功率-电压特性确定,该电压称为最佳电压。电池充电时可能需要与最佳电压不同的电压。因此,采用GMPPT全球最大功率点跟踪CUK转换器,将部分遮阳的太阳能电池板电压保持在最佳值,并将太阳能电池板电压降低或提高到电池充电所需的值。采用灰狼优化算法开发部分遮阳条件下最大功率点跟踪CUK变换器的太阳能电池充电器,并在MATLAB - SIMULINK中对部分遮阳太阳能电池板供电的CUK变换器进行了电池充电应用仿真。电池充电系统中的CUK转换器基本上是采用单个电源开关的降压-升压转换器。栅极脉冲到电源开关的占空比决定了从部分遮阳太阳能电池板获取的功率。因此,使用灰狼优化算法确定GMPPT的占空比,该算法可以快速跟踪GMPP,以应对快速变化的辐照度。对5.8 AH、48v的锂离子电池进行了充电仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Soft Computing Based MPPT Controller for Solar Powered Battery Charger Under Partial Shading Conditions
Solar irradiations received by the PV panel is blocked by a moving or non-moving object is known as partial shading condition. The solar panel power output under partial shaded will be a maximum only if the panel voltage is maintained at the Global Maximum Power Point. The GMPP can be determined from the Power-Voltage characteristics of the partially shaded solar panel and this voltage is called optimum voltage. The battery charging may require a voltage different from the optimum voltage. Therefore, a GMPPT Global Maximum Power Point Tracking CUK converter is employed that maintains partially shaded solar panel voltage at optimum value and buck or boost the solar panel voltage to a value required for battery charging. The objective of this work is to develop solar based battery charger using CUK converter with Maximum Power Point Tracking under partial shaded condition by Grey Wolf optimization algorithm The simulation of the partially shaded solar panel fed CUK converter for battery charging applications is performed in MATLAB - SIMULINK. The CUK converter in the battery charging system is basically a buck-boost converter that employs a single power switch. Duty cycle of gate pulse to power switch decides the power drawn from partially shaded solar panel. Therefore, the duty cycle is determined for GMPPT using Grey Wolf optimization algorithm which can track the GMPP very fast for fast changing irradiances. The simulation is performed for charging 5.8 AH, 48 V Lithium- Ion batteries.
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