Off-Grid Photovoltaic-Biogas Hybrid System for an Indonesian Boarding School

A. Rajani, D. M. Said, A. Fudholi, Z. A. Noorden, N. Ahmad, T. D. Atmaja
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Abstract

Future energy with bright prospects is renewable energy. One strategy to enhance the proportion of renewable energy in the energy mix is to switch from conventional to renewable energy-based energy sources. Previously using conventional energy sources, one of the male dormitories of Baiturrahman Boarding School will be converted to 100% renewable energy. When Homer software is used to simulate it, the best system will be chosen, with the input coming from locally available energy sources like sunlight from a photovoltaic module and biogas. From optimal output which consists of a 7.54 kW PV, a 5 kW biogas-fueled generator, an 18.78 kWh battery, and a 4 kW converter. 9.989 kW (98.13%) and a 190 kW (1.87%) biogas-fueled generator combined to produce electricity. The cost of energy is worth $0.216, and the present net cost is worth $17.769, according to the system's economic study. The results of the sensitivity analysis show that changes in the discount rate and variations in the value of inflation have an effect on the present net cost.
印尼寄宿学校离网光伏-沼气混合系统
前景光明的未来能源是可再生能源。提高可再生能源在能源结构中所占比例的一项战略是从传统能源转向以可再生能源为基础的能源。之前使用传统能源的Baiturrahman寄宿学校的一个男生宿舍将被转换为100%的可再生能源。当使用Homer软件进行模拟时,将选择最佳系统,该系统的输入来自当地可用的能源,如光伏模块的阳光和沼气。最佳输出包括7.54 kW PV, 5kw沼气发电机,18.78 kWh电池和4kw转换器。9.989千瓦(98.13%)和一台190千瓦(1.87%)的沼气发电机联合发电。根据该系统的经济研究,能源成本为0.216美元,而目前的净成本为17.769美元。敏感性分析的结果表明,贴现率的变化和通货膨胀值的变化对当前净成本有影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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