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University Campus Microgrid for Supporting Sustainable Energy Systems Operation

机译:大学校园微电网为能源可持续发展系统提供支持

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Many University campuses have been decreasing the environmental impacts and costs associated with electricity consumption through the implementation of energy efficiency programs, as well as the installation of renewable energy generation. As a next step, such buildings must be equipped with technologies able to provide the flexibility required to increase the matching between renewable generation and demand in order to enable large-scale integration of renewable generation. With such objective, this paper presents a microgrid constituted by photovoltaic generation, lithium-ion battery storage, unidirectional and bi-directional charging of electric vehicles and controllers for the space conditioning systems. Such microgrid was implemented in the Department of Electrical and Computer Engineering - University of Coimbra, for supporting sustainable energy systems operation, ensuring the optimized integration of renewable generation in large buildings. Simultaneously, the microgrid enables the assessment of new smart grid solutions, acting as a testbed for the research developed on flexibility options for future power systems.
机译:许多大学校园通过实施能源效率计划以及安装可再生能源,一直在减少环境影响和与电力消耗相关的成本。下一步,此类建筑物必须配备能够提供增加可再生能源和需求之间的匹配度所需的灵活性的技术,以实现可再生能源的大规模整合。出于这种目的,本文提出了一种微电网,该微电网由光伏发电,锂离子电池存储,电动汽车的单向和双向充电以及用于空间调节系统的控制器组成。这种微电网已在科英布拉大学的电气和计算机工程系实施,以支持可持续的能源系统运行,确保大型建筑物中可再生能源的优化整合。同时,微电网可以评估新的智能电网解决方案,作为针对未来电力系统的灵活性选项进行的研究的试验台。

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