A SIMULATION OF SOLAR ENERGY SYSTEM CONTROLLED BY P&O, IC AND FUZZY LOGIC USING BIDIRECTIONAL CHARGING OF BATTERY

A. Al-Jabari, Fatih Korkmaz, M. Teke
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Abstract

In this study, a simulation designs using a MATLAB is presenting to identify the characteristic of a solar energy panel as main feeding part, also, an alternative source represented by battery to compenstae the required missing energy on the load in case of low energy produced by a PV panel due to the effect of atmosphere condition on the solar energy in case of low radiation and temperature degree fall on it where a PV system as a whole works on feeding both of load and battery, but it may depend on the stored energy into the battery based on its capacity. In this purpose, different maximum power point techniques used in the PV system to extract the maximum energy. Perturb and Observe P& O, Incremental Conductance IC and Fuzzy Logic are the main common and modern techniques for tracking the maximum power
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采用p&o、IC和模糊逻辑控制的电池双向充电太阳能系统仿真
在这项研究中,使用MATLAB的仿真设计呈现确定太阳能面板的特点为主要部分,同时,另一个由电池compenstae所需失踪能源在负载情况下的低能量产生的光伏面板由于大气条件对太阳能辐射和温度较低的程度上落在光伏系统作为一个整体工作的地方在喂养的负载和电池,但这可能取决于储存在电池中的能量,这取决于电池的容量。为此,在光伏系统中采用不同的最大功率点技术来提取最大能量。摄动和观察P& O、增量电导集成电路和模糊逻辑是跟踪最大功率的主要常用和现代技术
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