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An Advanced Multicarrier Residential Energy Hub System Based on Mixed Integer Linear Programming

机译:一种基于混合整数线性规划的高级多载波住宅能源集线器系统

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摘要

This work proposes a multicarrier energy hub system with the objective of minimizing the economy cost and the CO_2 emissions of a residential building without sacrificing the household comfort and increasing the exploitation of renewable energy in daily life. The energy hub combines the electrical grid and natural gas network, a gas boiler, a heat pump, a photovoltaic plant, and a photovoltaic/thermal (PV/T) system. In addition, to increase the overall performance of the system, a battery-based energy storage system is integrated. To evaluate the optimal capacity of each energy hub component, an optimization scheduling process and the optimization problem have been solved with the YALMIP platform in the MATLAB environment. The result showed that this advanced system not only can decrease the economic cost and CO_2 emissions but also reduce the impact to electrical grid.
机译:这项工作提出了一种多载波能源中心系统,目的是最大限度地减少住宅建筑的经济成本和CO_2排放,而不会牺牲家庭舒适度,并增加日常生活中可再生能源的开发。 能量轮毂结合了电网和天然气网络,燃气锅炉,热泵,光伏设备和光伏/热(PV / T)系统。 此外,为了提高系统的整体性能,集成了基于电池的能量存储系统。 为了评估每个能量集线器组件的最佳容量,利用Matlab环境中的Yalmip平台解决了优化调度过程和优化问题。 结果表明,这种先进的系统不仅可以降低经济成本和CO_2排放,还可以减少对电网的影响。

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