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Size optimization of a PV/wind hybrid energy conversion system with battery storage using response surface methodology

机译:使用响应面方法优化带有电池存储的PV /风能混合能量转换系统的尺寸

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This paper aims to show the use of the response surface methodology (RSM) in size optimization of an autonomous PV/wind integrated hybrid energy system with battery storage. RSM is a collection of statistical and mathematical methods which relies on optimization of response surface with design parameters. In this study, the response surface, output performance measure, is the hybrid system cost, and the design parameters are the PV size, wind turbine rotor swept area and the battery capacity. The case study is realized in ARENA 10.0, a commercial simulation software, for satisfaction of electricity consumption of the global system for mobile communications (GSM) base station at Izmir Institute of Technology Campus Area, Urla, Turkey. As a result, the optimum PV area, wind turbine rotor swept area, and battery capacity are obtained to be 3.95 m~2, 29.4 m~2, 31.92 kWh, respectively. These results led to $37,033.9 hybrid energy system cost, including auxiliary energy cost. The optimum result obtained by RSM is confirmed using loss of load probability (LLP) and autonomy analysis.
机译:本文旨在展示使用响应面方法(RSM)在具有电池存储的自主PV /风能集成混合能源系统的尺寸优化中的使用。 RSM是统计和数学方法的集合,这些方法依赖于使用设计参数对响应面进行优化。在这项研究中,响应面,输出性能指标是混合动力系统的成本,而设计参数是PV尺寸,风力涡轮机转子后掠面积和电池容量。该案例研究是在商用模拟软件ARENA 10.0中实现的,该软件可满足土耳其Urla的伊兹密尔理工大学校园区全球移动通信(GSM)基站系统的电力消耗。结果,最佳PV面积,风力涡轮机转子扫掠面积和电池容量分别为3.95m〜2、29.4m〜2、31.92kWh。这些结果导致混合能源系统成本(包括辅助能源成本)为$ 37,033.9。使用负载损失概率(LLP)和自治分析可以确认RSM获得的最佳结果。

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