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Optimal sizing method for stand-alone hybrid solar-wind system with LPSP technology by using genetic algorithm

机译:基于遗传算法的带LPSP技术的单机混合太阳风系统最优尺寸确定方法

摘要

System power reliability under varying weather conditions and the corresponding system cost are the two main concerns for designing hybrid solar-wind power generation systems. This paper recommends an optimal sizing method to optimize the configurations of a hybrid solar-wind system employing battery banks. Based on a genetic algorithm (GA), which has the ability to attain the global optimum with relative computational simplicity, one optimal sizing method was developed to calculate the optimum system configuration that can achieve the customers required loss of power supply probability (LPSP) with a minimum annualized cost of system (ACS). The decision variables included in the optimization process are the PV module number, wind turbine number, battery number, PV module slope angle and wind turbine installation height. The proposed method has been applied to the analysis of a hybrid system which supplies power for a telecommunication relay station, and good optimization performance has been found. Furthermore, the relationships between system power reliability and system configurations were also given.
机译:在变化的天气条件下的系统功率可靠性以及相应的系统成本是设计混合太阳能-风能发电系统的两个主要问题。本文提出了一种优化尺寸的方法,以优化采用电池组的混合太阳风系统的配置。基于遗传算法(GA),该算法能够以相对简单的计算来获得全局最优,因此,开发了一种最优选型方法来计算最优系统配置,该最优配置可以实现客户所需的电源损耗概率(LPSP)。最低的年度系统成本(ACS)。优化过程中包含的决策变量是光伏组件编号,风力涡轮机编号,电池数量,光伏组件倾斜角度和风力涡轮机安装高度。所提出的方法已经被应用到为电信中继站供电的混合系统的分析中,并且已经发现了良好的优化性能。此外,还给出了系统电源可靠性与系统配置之间的关系。

著录项

  • 作者

    Yang H; Zhou W; Lu L; Fang Z;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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