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Techno-Economic Analysis of Photovoltaic-Hydrogen Fuel Cell/Pumped Hydro Storage System for Micro Grid Applications: Case Study in Cyprus

机译:用于微电网的光伏-氢燃料电池/抽水蓄能系统的技术经济分析:塞浦路斯案例研究

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Renewable energy resources such as solar resources are suitable alternatives for the use of fossil fuels as they are abundant, can be harnessed in affordable ways and are considered environmentally friendly. However, renewable energy resources fluctuate with time which decreases the matching between the energy produced by the renewable energy system and the demand and also decreases the reliability of the power supply. There are several potential ways to increase the matching and reliability of renewable energy systems such as the hybridization of renewable energy resources and the integration of energy storage. A techno-economic analysis of different configurations of Photovoltaic, Hydrogen Fuel Cell (HFC) and Pumped Hydro Storage (PHS) is carried out where Middle East Technical University Northern Cyprus Campus (METU NCC) is the case study. The optimal configurations of the PV system with different energy storage system configurations for the university are found based on maximizing the renewable energy (RES) fraction with Levelized Cost of Electricity (LCOE) equals to the grid tariff. However, the objective of the optimization becomes the maximization of the RES fraction with the minimum LCOE if there is no a feasible configuration. The results show that the integration of HFC and PHS system with the PV system increases the RES fraction and the demand-supply fraction from 36.2% to 45.4% and from 23.9% to 35.1%, respectively. The proposed system consists of 2.57 MW PV, 1.16 MWh HFC and 4.14 MWh PHS where such a system has LCOE of 0.181 USD/kWh.
机译:可再生能源(例如太阳能)是化石燃料的合适替代品,因为它们丰富,可以以负担得起的方式加以利用并且被认为对环境友好。然而,可再生能源随着时间而波动,这降低了可再生能源系统产生的能量与需求之间的匹配,并且还降低了电源的可靠性。有几种潜在的方法可以提高可再生能源系统的匹配性和可靠性,例如可再生能源的混合和储能的集成。在中东技术大学北塞浦路斯校区(METU NCC)进行案例研究的情况下,对光伏,氢燃料电池(HFC)和抽水蓄能(PHS)的不同配置进行了技术经济分析。基于最大化可再生能源(RES)的比例(电价平分电费(LCOE)等于并网电价),找到大学具有不同储能系统配置的光伏系统的最佳配置。但是,如果没有可行的配置,则优化的目标将是使用最小LCOE最大化RES分数。结果表明,HFC和PHS系统与PV系统的集成分别使RES份额和供求份额分别从36.2%增加到45.4%和从23.9%增加到35.1%。拟议的系统由2.57 MW PV,1.16 MWh HFC和4.14 MWh PHS组成,其中此类系统的LCOE为0.181 USD / kWh。

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