Fuzzy Logic-Based Design Optimization and Economic Planning of a Microgrid for a Residential Community in Bangladesh

Sayeed Hasan, Md. Rifat Hazari, M. Mannan
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引用次数: 2

Abstract

Hybrid renewable energy systems are becoming more predominant because of climate change and the overconsumption of natural fuels. Proper utilization of renewable resources can uplift energy-deprived regions while also contributing to a nation's economic growth. However, effective system planning and resource assessment are essential for effective utilization. In that regard, the study proposes a hybrid microgrid design for a remote island in Bangladesh. The proposed system comprises solar photovoltaics, wind turbines, and lithium-ion battery storage which is coupled to the utility grid. For modeling and simulation of the optimal system design of the residential load in Urir char, Hybrid Optimization Multiple Energy Resources (HOMER) pro was utilized. The load profile for the system was created employing fuzzy logic and random probability, as well as meteorological data for the chosen location. Several instances with reliability factors such as short-term and long-term interruptions are also taken into consideration in the design. Additionally, the paper discussed a comparison between the proposed system and other considered scenarios as well as the utility grid. The proposed system is a viable approach for providing cleaner energy for the selected area in regards to energy cost (0.035$/kWh), a renewable fraction (90%), emission reduction (78%), and reliability.
基于模糊逻辑的孟加拉住宅社区微电网设计优化与经济规划
由于气候变化和自然燃料的过度消耗,混合可再生能源系统正变得越来越占主导地位。合理利用可再生资源可以提升能源匮乏地区的地位,同时也有助于一个国家的经济增长。然而,有效的系统规划和资源评估是有效利用的必要条件。在这方面,该研究为孟加拉国的一个偏远岛屿提出了一个混合微电网设计。拟议的系统包括太阳能光伏、风力涡轮机和锂离子电池存储,这些存储与公用事业电网耦合。利用多能源混合优化软件(Hybrid Optimization Multiple Energy, HOMER),对乌拉尔电厂住宅负荷优化系统设计进行建模与仿真。利用模糊逻辑和随机概率,以及所选位置的气象数据,建立了系统的负荷分布。在设计中还考虑了短期中断和长期中断等可靠性因素。此外,本文还讨论了所提出的系统与其他考虑的场景以及公用电网的比较。在能源成本(0.035美元/千瓦时)、可再生能源比例(90%)、减排(78%)和可靠性方面,拟议的系统是为选定地区提供清洁能源的可行方法。
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