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Break-even analysis and size optimization of a PV/wind hybrid energy conversion system with battery storage - A case study

机译:带有电池存储的光伏/风能混合能量转换系统的收支平衡分析和尺寸优化-案例研究

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摘要

This paper aims to show an optimum sizing procedure of autonomous PV/wind hybrid energy system with battery storage and a break-even analysis of this system and extension of transmission line. We use net present value (NPV) method for the comparison of autonomous hybrid energy system and extension of transmission line cases. The case study is completed for the satisfaction of the electricity consumption of global system for mobile communication base station (GSM) at Izmir Institute of Technology Campus Area, Urla, Izmir, Turkey. First, we optimize the PV/wind energy system using response surface methodology (RSM) which is a collection of statistical and mathematical methods relying on optimization of response surface with design parameters. As a result of RSM, the optimum PV area, wind turbine rotor swept area, and battery capacity are obtained as 3.95 m2, 29.4 m2, 31.92 kW h, respectively. These results led to $37,033.9 hybrid energy system cost. Second, break-even analysis is done to be able to decide the optimum distance where the hybrid energy system is more economical than the extension of the transmission line. The result shows that, if the distance between national electricity network and the GSM base station location where the hybrid energy system is assumed to be installed is at a distance more than 4817 m, the installation of hybrid energy system is more economical than the electricity network.
机译:本文旨在展示具有电池存储功能的自主光伏/风能混合能源系统的最佳选型程序,并对该系统进行收支平衡分析并扩展输电线路。我们使用净现值(NPV)方法比较自治混合能源系统和扩展输电线路案例。该案例研究已完成,其目的是为了满足土耳其伊兹密尔乌拉市伊兹密尔理工大学校园区全球移动通信基站(GSM)系统的用电量。首先,我们使用响应面方法(RSM)优化光伏/风能系统,该方法是统计和数学方法的集合,这些方法依赖于使用设计参数对响应面进行优化。作为RSM的结果,最佳PV面积,风轮机转子扫掠面积和电池容量分别为3.95平方米,29.4平方米和31.92千瓦时。这些结果导致混合能源系统成本为$ 37,033.9。其次,进行收支平衡分析,以便能够确定最佳距离,在该距离上,混合能源系统比传输线的延伸更经济。结果表明,如果国家电网与假设要安装混合能源系统的GSM基站位置之间的距离大于4817 m,则混合能源系统的安装比电网更经济。

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