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Methodology to Size an Optimal Standalone Hybrid Solar-Wind-Battery System using Genetic Algorithm

机译:使用遗传算法确定最优的独立式混合型太阳能风电池系统的方法

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This paper presents a methodology to calculate the optimal size of a stand-alone hybrid Wind- photovoltaic (PV)-Battery system. The study was interested in the influence of the wind and solar potential and the shape of the load profile on the optimal configuration. The collection of one year of wind speed, solar radiation and ambient temperature, recorded every hour in Kayar and Potou located in the northwestern of Senegal were used with the manufacturer’s specifications of a wind turbine and a photovoltaic (PV) panel to calculate the power generated by the wind turbine and the PV modules for each hour of the day. The mathematical modeling of the principal elements of the hybrid wind/PV system is presented showing the main sizing variables. The results of simulations, by the use of the load profile n°1, show that the optimal configuration was hybrid system wind/PV/batteries with 71 and 64% of energy coming from the wind turbine on the site of Potou and Kayar, respectively. The results also show that the load profile n°2 was more suited to the hourly wind and solar energy output for the two sites compared to the rest of the load profiles.
机译:本文提出了一种计算独立的混合式风力-光伏(PV)-电池系统最佳尺寸的方法。该研究对风能和太阳能的影响以及负载曲线的形状对最佳配置的影响很感兴趣。每小时记录一次在塞内加尔西北部的Kayar和Potou记录的一年的风速,太阳辐射和环境温度,并与风力涡轮机和光伏(PV)面板的制造商规格一起使用,以计算风力发电机和光伏组件在一天中的每个小时产生的功率。提出了混合风力/光伏系统主要要素的数学模型,其中显示了主要的尺寸变量。通过使用负载分布n° 1进行的模拟结果表明,最佳配置是混合系统风/ PV /电池,其中分别有71%和64%的能量来自位于Potou和Kayar的风力涡轮机。结果还表明,与其余负荷曲线相比,负荷曲线n <2更适合两个地点的每小时风能和太阳能输出。

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