Techno-Economic Feasibility Analysis of Hybrid System in Bangladesh - A Case Study for Higher Learning Institution

Adnan Shafee, Mohammad Rabib Uddin, Upama Dev, Shameem Ahmad, Sujan Howlader, Mohammad Tausiful Islam, M. M. Hossain, Abrar Jahin Khan
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Abstract

This research describes the application of an imperial strategy using the software program Hybrid Optimization of Multiple Electric Renewables (HOMER) to create an adjustable sketch of a hybrid renewable energy source (HRES). A higher learning institute of Bangladesh located in Dhaka, Bangladesh has been proposed to raise out through techno-economic analysis, operational overall performance analyses, and environmental element reviews pertaining to the above device for each on-grid and off-grid-connected modes. In this work, many combinations of diesel generators, photovoltaic (PV) and storage batteries have been taken into consideration to determine which mixture suits the urban area the fantastic with an affordable cost of electricity and little climate effect. A sensitivity investigation was also carried out to show how the overall performance of the system would trade if the key parameters, such as power purchase, load demand, sellback, and fuel were changed. The findings indicate a higher tendency towards the use of renewable strength sources, which have the lowest net present cost (NPC) and cost of energy (COE). In comparison to all different eventualities for each off-grid and on-grid connections, the hybrid Diesel /PV/Battery system is found to have the excellent technical performance. It also reviews good economic and environmental performance, which has increased system's sustainability.
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孟加拉国混合系统的技术经济可行性分析——以高等院校为例
本研究描述了使用多种可再生电力混合优化(HOMER)软件程序创建混合可再生能源(HRES)可调草图的帝国策略的应用。位于孟加拉国达卡的一所孟加拉国高等院校建议对上述设备的每一种并网和离网并网模式进行技术经济分析、运行总体性能分析和环境因素审查。在这项工作中,考虑了柴油发电机、光伏(PV)和蓄电池的许多组合,以确定哪种组合适合城市地区,即电力成本可承受且对气候影响小。还进行了敏感性调查,以显示如果关键参数(如购电、负载需求、回售和燃料)发生变化,系统的整体性能将如何变化。研究结果表明,使用具有最低净当前成本(NPC)和能源成本(COE)的可再生能源的趋势更高。通过对每一种离网和并网连接的不同可能性进行比较,发现柴油/光伏/电池混合动力系统具有优异的技术性能。它还审查了良好的经济和环境绩效,这增加了系统的可持续性。
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