投资回收期
按来源划分的电力成本
电
环境科学
光伏系统
发电
太阳能
太阳辐照度
铭牌容量
环境经济学
环境工程
生产(经济)
气象学
工程类
功率(物理)
电气工程
经济
物理
量子力学
宏观经济学
作者
Ihsan Barran,Eko Adhi Setiawan
出处
期刊:IOP conference series
[IOP Publishing]
日期:2022-02-01
卷期号:997 (1): 012016-012016
被引量:2
标识
DOI:10.1088/1755-1315/997/1/012016
摘要
Abstract Indonesia is intensively building solar energy, which divided into three types, namely rooftop, solar farm, and floating solar with a target-installed capacity of 37.15 GW. A lot of land area is required for the development of solar energy for the next 20-25 years. The average land area required for 1 PV module is approximately 2 m 2 , so it is predicted that the new land area needed will be difficult to obtain in the future. Repowering is a solution to deal with these potential problems, repowering is an interesting new business in Europe when we have to face power plants that have entered the end-of-life. The study aims to analyze if repowering is implemented, we can reduce the Levelized Cost of Electricity. A plant with a capacity of 1.4 MWp will be used as the basis for the simulation. Using a monitoring system to see energy production, temperature, irradiance, and performance ratio is used as the methodology for collecting data. After that, it will analyze from a technical and economic point of view. The result shows that energy production increased by 24% or by 10,645,786 kWh and the Levelized Cost of Electricity decreased by 0.02 USD/kWh with an IRR of 5.67% and a payback period of 14.5 years. This study finds that repowering can reduce electricity tariffs and increase energy production.
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