Study of Indonesia’s Solar Energy Implementation Using Identification of Potency, Policies, and Cost-Benefit Analysis

M. D. Anggoro, D. Siregar, R. Ninggar, S. Wicaksono, S. Lee
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Abstract

The solar PV systems are semiconductor devices that precisely convert sunlight into electricity, through the transfer of electrons. They provide several advantages, such as high modularity, zero noise, and adequate availability of solar resources in Indonesia. Therefore, this study aims to determine the potency, policy perspective, and Cost-Benefit Analysis (CBA) of the solar energy implementation for electricity generation. A statistical analysis was used for measuring potency, as well as reviewing opportunistic policies and barriers. A review of some CBA-based journals was also carried out, to determine that the development of solar power electricity had more benefit than fossil fuels and LCOE (Levelized Cost Of Electricity). The results of the 10-days average value calculation in 2019 were 388-563 W/m2, with the maximum values at 1137-1604 W/m2. Meanwhile the analysis of the maximum hourly averages for Western, Central, and Eastern Indonesia were 570-719, 634-758, and 559-627 W/m2 at 11.00-12.00 WIB, 11.00-13.00 WITA, and 12.00-13.00 WIT, respectively. The potency of solar radiation intensity in Indonesia was averagely 150-750 W/m2, as the highest values were found in East Nusa Tenggara, Maluku, and Merauke.
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利用潜力识别、政策和成本效益分析研究印尼太阳能的实施
太阳能光伏系统是一种半导体装置,通过电子的转移,精确地将太阳光转化为电能。它们具有几个优点,如高模块化、零噪音和印度尼西亚太阳能资源的充分可用性。因此,本研究旨在确定太阳能发电的效能、政策视角和成本效益分析(CBA)。统计分析用于衡量效力,并审查机会主义政策和障碍。对一些基于cba的期刊进行了审查,以确定太阳能发电的发展比化石燃料和LCOE(电力平准化成本)更有利。2019年10天平均值计算结果为388 ~ 563 W/m2,最大值为1137 ~ 1604 W/m2。印度尼西亚西部、中部和东部在11.00 ~ 12.00 WIB、11.00 ~ 13.00 WITA和12.00 ~ 13.00 WIB时段的最大小时平均值分别为570 ~ 719、634 ~ 758和559 ~ 627 W/m2。印度尼西亚的太阳辐射强度平均为150 ~ 750 W/m2,其中东努沙登加拉、马鲁古和梅劳克的太阳辐射强度最高。
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审稿时长
8 weeks
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