Economic Analysis of Combination of Pumped Hydroelectric Storage (PHS) and Floating Photovoltaic + PV Roof Top + PV in empty land of Power Plant Area

Yogi Yohannes Siburian, Prieta Adriana, Selly Danastri, B. Priyono
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Abstract

∗Java Bali electricity system is the largest electricity system in Indonesia. This becomes the main consideration for strengthening the Java-Bali electricity system so that if a blackout occurs it does not take a long time for system recovery. To meet the large and reliable demand for electricity, Cisokan pumped storage hydropower plant is currently being developed with a capacity of 1040 MW (4 X 260 MW). In this paper, we combine the Pumped Hydroelectric Storage (PHS) with floating photovoltaic + PV Roof Top + PV in empty land with a total capacity of 652 MW. The economic analysis of a combination of Pumped Hydroelectric Storage (PHS) and floating photovoltaic system is calculated using LCOE formula that uses some components, i.e. project and O&M cost of the pumped-storage hydropower plant, PV module, inverter, and installation cost, O&M cost of a PV system, and electricity tariff from PLN grid for industry category (> 200 kVA). The boundary of this study is to calculate Levelized Cost of Energy (LCOE) of Pumped Hydroelectric Storage (PHS) without floating photovoltaic with the result 17.97 Cent $/kWh, LCOE of floating photovoltaic+ PV Roof Top + PV in empty land with the result 4.30 Cent $/kWh, and LCOE of Pumped Hydroelectric Storage (PHS) with floating photovoltaic + PV Roof Top + PV in empty land with the result 16.49 Cent $/kWh. The purpose of this study is to gain the cost efficiency of a combination of Pumped Hydroelectric Storage (PHS) and floating photovoltaic + PV Roof Top + PV in empty land in the Upper Cisokan Pumped Hydroelectric Storage Project with the result of 21.80%.
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电站空区抽水蓄能与浮动光伏+屋顶光伏+光伏组合的经济分析
*爪哇巴厘电力系统是印尼最大的电力系统。这成为加强爪哇-巴厘岛电力系统的主要考虑因素,以便如果发生停电,系统恢复不需要很长时间。为了满足大量可靠的电力需求,Cisokan抽水蓄能水电站目前正在开发,容量为1040兆瓦(4 X 260兆瓦)。本文将抽水蓄能与浮动光伏+屋顶光伏+空地光伏相结合,总容量为652mw。采用LCOE公式计算抽水蓄能电站与浮动光伏系统组合的经济分析,该公式使用抽水蓄能电站、光伏组件、逆变器的工程和运维成本以及安装成本、光伏系统的运维成本、PLN电网的行业级电价(> 200kva)等部分进行计算。本研究的边界是计算不含浮式光伏的抽水蓄能电站的平净能源成本(LCOE)为17.97 Cent $/kWh,浮式光伏+光伏屋顶+空地光伏的平净能源成本(LCOE)为4.30 Cent $/kWh,浮式光伏+光伏屋顶+空地光伏的抽水蓄能电站的平净能源成本(LCOE)为16.49 Cent $/kWh。本研究的目的是在上西索坎抽水蓄能项目中获得抽水蓄能(PHS)与浮动光伏+光伏屋顶+空地光伏相结合的成本效率,结果为21.80%。
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