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Sizing methodology for hybrid photovoltaic /wind/ hydrogen/battery integrated to energy management strategy for pumping system

机译:集成到泵系统能源管理策略中的混合光伏/风/氢/电池的尺寸确定方法

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摘要

The real penetration of renewable energy sources under random variability and unpredictability of weather conditions requires an optimal sizing of hybrid renewable power generation systems. This paper presents a techno-economic optimization model, to perform the optimal sizing of a stand-alone hybrid photovoltaic/wind/hydrogen/battery system. Optimum sizing has been applied to a system consisting of an induction motor coupled to a centrifugal pump, located at Sahline-Tunisia. The optimal-cost design and the new suitable power management approach are the two main objectives. The optimal sizing is assessed on the basis of technical (the Deficiency of Power Supply Probability, the Relative Excess Power Generated) and economic (the Energy Cost as well as the Total Net Present Cost) criteria. The power management strategy optimizes how the spare energy is used. The results highlight the important role of the hybridization of renewable energy sources, photovoltaic and wind turbine, in reducing the cost of the system. It is also noted that the hydrogen chain prolongs the life of the battery, preventing the massive use of the latter. The optimized sizing algorithm gives all the possible configurations of the hybrid system not only for a pumping system but also for any autonomous load located all over the world.
机译:在随机变化和天气状况不可预测的情况下,可再生能源的真正渗透需要混合可再生能源发电系统的最佳尺寸。本文提出了一种技术经济优化模型,以对独立的混合光伏/风能/氢能/电池系统进行优化设计。最佳尺寸已应用于由感应电机与位于萨赫林-突尼斯的离心泵相连的系统。最优成本设计和新的合适电源管理方法是两个主要目标。最佳规模是根据技术(电源概率不足,相对过剩发电量)和经济(能源成本以及总净现值)标准进行评估的。电源管理策略优化了备用能源的使用方式。结果强调了可再生能源,光伏和风力涡轮机的混合在降低系统成本方面的重要作用。还应注意,氢链延长了电池的寿命,从而阻止了电池的大量使用。优化的尺寸算法不仅为抽水系统提供了混合动力系统的所有可能配置,而且还为遍布全球的任何自主负载提供了混合动力系统的所有可能配置。

著录项

  • 来源
    《Energy》 |2018年第15期|743-762|共20页
  • 作者单位

    Research Unit on Study of Industrial Systems and Renewable Energy (ESIER), University of Monastir, Department of Electrical Engineering, National School of Engineers of Monastir;

    Department of Electrical Engineering, Control and Energy Management Lab., (CEMLab), University of Sfax, National School of Engineers of Sfax;

    Laboratoire LTII, Faculte de Technologie, Universite de Bejaia;

    Research Unit on Study of Industrial Systems and Renewable Energy (ESIER), University of Monastir, Department of Electrical Engineering, National School of Engineers of Monastir;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hybrid photovoltaic/wind pumping system; Battery; Fuel cell/electrolyzer storage system; Optimal sizing; Energy management;

    机译:光伏/风电混合系统;电池;燃料电池/电解池存储系统;最佳尺寸;能源管理;

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