Design and Optimization of a Campus Microgrid using the HOMER Simulator

Ahmad Bin Afzal, Fahad Iqbal, Y. Rafat, Abdullah Bin Afzal
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Abstract

In light of recent population expansion and increased industrialization, there is a substantial increase in demand for electrical energy. Due to greenhouse gas emissions, depleting fossil fuels, and high lifecycle costs, traditional energy resources have proved to be a hurdle in the path of development. Given their independence from fossil fuels, increased dependability, and zero carbon emissions, microgrids powered by renewable energy sources stand out as being among the most environmentally friendly ways to meet future energy demands. To achieve the seventh Sustainable Development Goal by 2030, academic and research institutions must be at the forefront of research and development efforts on the transition to sustainable energy. In this paper, we have explored the optimization and implementation of institutional-based sustainable microgrids based on aspects like cost analysis, carbon emission, and the availability of energy resources. To fulfill the technical and emission limits as well as to obtain the lowest investment and operating costs, the ideal size of Hybrid Renewable Energy Systems (HREs) equipment should be chosen. Hybrid Optimization of Multiple Energy Resources (HOMER) software is one of the most effective tools for modelling and optimization. NASA's (National Aero Space Agency) solar and wind data is used to obtain metrological information, such as solar irradiance and wind speed.
基于HOMER模拟器的校园微电网设计与优化
鉴于最近的人口膨胀和工业化程度的提高,对电能的需求大幅增加。由于温室气体排放、化石燃料消耗和高生命周期成本,传统能源已被证明是发展道路上的障碍。由于不依赖化石燃料、可靠性提高和零碳排放,由可再生能源供电的微电网脱颖而出,成为满足未来能源需求的最环保方式之一。为了到2030年实现第七个可持续发展目标,学术和研究机构必须站在向可持续能源过渡的研究和开发工作的最前沿。本文从成本分析、碳排放和能源可获得性等方面探讨了基于制度的可持续微电网的优化与实施。为了满足混合可再生能源系统(HREs)的技术和排放限制,并获得最低的投资和运行成本,应选择理想的设备尺寸。多能源混合优化(HOMER)软件是最有效的建模和优化工具之一。美国宇航局(美国国家航空航天局)的太阳和风数据用于获取气象信息,如太阳辐照度和风速。
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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