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TECHNICAL AND ECONOMIC ANALYSES FOR SIZING PV POWER PLANT WITH STORAGE SYSTEM FOR METU NCC

机译:METU NCC储能系统光伏电站规模化的技术经济分析

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The use of renewable energy with storage systems is particularly important in small and unreliable grids, such as islands. This paper reports sizing of a photovoltaic (PV) power plant with storage system for Middle East Technical University Northern Cyprus Campus through technical and economic analyses. PV system was modeled considering fixed tilted, one-axis and two-axis tracking systems using hourly data. Energy storage system was included in the model to overcome the temporal mismatch between the electricity demand of the campus and the electricity supplied by the PV system. The reduction in CO_2 emissions by deploying these systems was studied. The results showed that although it would not be economically feasible to meet the entire demand of the campus, a PV system of 4.5 MW with 15 MWh of storage size would generate enough electricity to meet the demand for 83% of the time in a year, yielding the cost of 0.25 USD/kWh.
机译:在小型,不可靠的电网(例如岛屿)中,将可再生能源与存储系统配合使用尤其重要。本文通过技术和经济分析,为中东技术大学北塞浦路斯校园报告了一个带存储系统的光伏(PV)电厂的规模。光伏系统的建模考虑了使用小时数据的固定倾斜,单轴和两轴跟踪系统。该模型中包括储能系统,以克服校园用电需求与光伏系统提供的电能之间的时间不匹配。研究了通过部署这些系统减少的CO_2排放。结果表明,尽管要满足园区的全部需求在经济上是不可行的,但4.5兆瓦,存储容量为15兆瓦时的光伏系统将产生足够的电力来满足一年中83%的时间需求,产生的成本为0.25美元/千瓦时。

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