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Optimal configuration analysis for a campus microgrid--a case study

机译:校园微电网的最佳配置分析-案例研究

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The foremost issues of 21st century are challenging demand of electrical energy and to control the emission of Green House Gases (GHG) emissions. Renewable energy resources based sustainable microgrid emerges as one of the best feasible solution for future energy demand while considering zero carbon emission, fossil fuel independency, and enhanced reliability. In this paper, optimization and implementation of institutional based sustainable microgrid are discussed based on cost analysis, carbon emission, and availability of energy resources. Various microgrid topologies are considered for addressing the most ideal solution. The metrological data such as irradiance is acquired from solar satellite data of NASA (National Aero Space Agency) while the data for wind speed is taken from synergy enviro engineer's site. HOMER simulation tool is used for modelling and optimization purpose.
机译:21世纪最重要的问题是对电能的需求提出挑战,并控制温室气体(GHG)的排放。考虑到零碳排放,化石燃料的独立性和增强的可靠性,基于可再生能源的可持续微电网已成为满足未来能源需求的最佳可行解决方案之一。在本文中,基于成本分析,碳排放和能源可用性,讨论了基于制度的可持续微电网的优化和实施。考虑使用各种微电网拓扑来解决最理想的解决方案。辐照度等计量数据是从NASA(国家航空航天局)的太阳卫星数据中获取的,而风速的数据则是从协同环境工程师的站点获取的。 HOMER仿真工具用于建模和优化目的。

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