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Optimal Fuel Consumption Planning and Energy Management Strategy for a Hybrid Energy System with Pumped Storage

机译:带抽水蓄能的混合能源系统的最优燃料消耗计划和能源管理策略

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Many agriculture investments are oriented to the Algerian Sahara. Noticeably, they need electricity which is often by diesel generators. The refuelling process is a barricade due to the very far and remote area distance which make it very expensive. To overcome this issue, a hybridization is initiated with the local renewable solar energy. Correspondingly, the PV source marks an excess or shortage of energy; to cope this uncontrolled power an energy storage system is compulsory. This work is confined to the hydro pumped storage system which is favorable due to its geological aspects and the subject matter. This hybridization needs a specific energy management control. The suggested management strategy considers the temporal solar energy and associates it to the pumping servitudes and the online fuel consumption optimization. This last, proves the PSH performance dual function in both the irrigation and power restitution; it also reduce the gas emission and save fuel. As far as this study is concerned, the suggested formula of online fuel consumption per kWh is successfully examined through the energy management strategy in comparison to that of the literature. Consequently, this study could be helpful for similar future studies.
机译:许多农业投资都针对阿尔及利亚撒哈拉沙漠。值得注意的是,他们需要的电能通常是柴油发电机产生的。加油过程由于路途遥远和偏远地区而成为障碍,因此非常昂贵。为了克服这个问题,人们开始与当地的可再生太阳能进行杂交。相应地,光伏能源标志着能源过剩或短缺。为了应对这种不受控制的电力,必须使用储能系统。这项工作仅限于液压抽水蓄能系统,由于其地质方面和主题,这是有利的。这种杂交需要特定的能源管理控制。建议的管理策略考虑了临时太阳能,并将其与抽油机和在线油耗优化相关联。最后,证明了PSH在灌溉和电力恢复中均具有双重功能;它还减少了气体排放并节省了燃料。就本研究而言,与文献相比,通过能源管理策略成功地研究了每千瓦时在线燃料消耗的建议公式。因此,这项研究可能对以后的类似研究有所帮助。

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