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Optimal Synthesis, Design and Operation of Smart Microgrids Serving a Cluster of Buildings in a Campus with Centralized and Decentralized Hybrid Renewable Energy Systems

机译:智能微电网的最佳合成,设计和运行,在校园内提供集中式和分散的混合可再生能源系统的建筑物群

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Optimal design and operation of energy systems serving clusters of buildings interconnected by energy microgrids is a scientific challenge for the engineering community, with many interdisciplinary aspects involved. In the paper, the optimization problem is tackled in terms of simulation-based design of the energy system for a typical year of operation. The methodology has been applied to a Campus in Trieste, Italy, involving locally available renewable energy sources, a centralized cogeneration system, and decentralized heat pumps. The nominal powers of cogeneration plant, photovoltaic modules and wind turbine have been optimized by a population-based evolutionary optimization algorithm, previously proposed by the authors. We have also found the optimal scheduling of energy generators by means of a greedy approach. The solution with maximum Annualized Cost Saving Percentage is discussed, highlighting how a configuration involving decentralized heat pumps is cost effective, integrates more renewable energy sources, and reduces environmental impact and grid exchange compared to a benchmark solution, with fully centralized generators.
机译:能量系统的最佳设计和操作,为能源微普林相互关联的建筑物集群是工程界的科学挑战,许多跨学科方面涉及。本文中,在典型的操作年份的能量系统的基于仿真的设计方面,解决了优化问题。该方法已应用于意大利的里雅斯特的校园,涉及本地可用的可再生能源,集中式发电系统和分散的热泵。发电厂,光伏模块和风力涡轮机的标称动力由基于人群的进化优化算法进行了优化,先前由作者提出。我们还通过贪婪的方法发现了能量发生器的最佳调度。讨论了最大年度成本节约百分比的解决方案,突出了涉及分散的热泵的配置如何具有成本效益,整合更可再生能源,与基准解决方案相比,与基准解决方案相比,降低了环境影响和网格交流。

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