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Grid-Connected and Off-Grid Solar PV System Design Using Long-term Climatological Data and Techno-Economic Analysis for Ecological Conservation

机译:网格连接和离网太阳能光伏系统设计利用长期气候数据和技术经济分析进行生态保护

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This study aims at designing the solar power system for ecological conservation, i.e., sea turtle conservation at the Banyuwangi Sea Turtle Foundation (BSTF), which requires electricity for the pump station, heating and lighting. The solar power system design was aided with the daily solar irradiance derived from sunshine duration data from 1980 to 2018. Mann-Kendall test and Sen's slope estimator were applied to estimate the rate of long-term of solar irradiance. The results reveal that the solar irradiance is generally higher in December, January, and April, and shows no significant trend. The average of solar irradiance during the dry and wet season is 5.03 and 4.58 kWh/m~2/day, respectively. Using the geographical data of BTSF, approximately 943 m~2 area can be exploited for the solar power system. The simulation using PVsyst predicts an energy production up to 198.4 MWh/year which can be generated from the proposed system. Despite the higher levelized cost of electricity (LCOE) of the solar power system, i.e., USD 0.32/kWh, the LCOE tends to decrease in the upcoming years due to increased performance of solar PV and batteries. Furthermore, the development of the solar power system for sea turtle conservation is necessary to promote sustainable energy for a sustainable environment.
机译:本研究旨在设计生态保护太阳能系统,即海龟保护在Banyuwangi海龟基础(BSTF),这需要泵站的电力,供暖和照明。太阳能电力系统设计辅助从1980年至2018年阳光持续时间数据的日常太阳辐照度辅助。Mann-Kendall测试和SEN的斜坡估计器估计了太阳辐照度的长期速度。结果表明,太阳辐照规定在12月,1月和4月的情况下普遍较高,并没有显示出明显的趋势。干湿季节期间太阳辐照度的平均值分别为5.03和4.58千瓦时/ m〜2 /天。使用BTSF的地理数据,可以为太阳能系统利用大约943米〜2区域。使用PVSyst的仿真预测了高达198.4 MWH /年的能源产量,这可以从所提出的系统中产生。尽管太阳能系统的电力(LCoE)较高,但由于太阳能光伏电池和电池的性能提高,即将来临的多年来,即可达到较高的电力电力(LCoE)。此外,对于促进可持续环境的可持续能源,有必要开发用于海龟保护的太阳能电力系统。

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