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Optimal Management of Energy Consumption and Comfort for Smart Buildings Operating in a Microgrid

机译:在微电网中运行的智能建筑的能耗和舒适度的优化管理

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This paper presents a mixed integer non-linear programming model to optimize, in a centralized fashion, the operation of multiple buildings in a microgrid. The proposed model aims to minimize the total cost of the energy imported from the main grid at the interconnection point, managing the power demand and generation of buildings, while operational constraints of the electrical grid are guaranteed. This approach considers the management of heating, ventilation, and air conditioning units, lighting appliances, photovoltaic generation and energy storage system of each building. Comfortable indoor conditions for the occupants are kept by a set of mathematical constraints. Additionally, a strategy that simplifies the original model is presented, based on a set of linearization techniques and equivalent representations, obtained through a pre-processing stage executed in EnergyPlus software. This strategy allows approximating the proposed model into a mixed integer linear programming formulation that can be solved using commercial solvers. The proposed model was tested in a 13-bus microgrid for different deterministic cases of study with non-manageable loads and smart buildings. A large-size test case is also considered. Finally, a rolling horizon strategy is proposed with the aim of addressing the uncertainty of the data, as well as reducing the amount of forecasting data required.
机译:本文提出了一种混合整数非线性规划模型,以集中方式优化微电网中多个建筑物的运行。所提出的模型旨在将互连点从主电网进口的能源的总成本降至最低,同时管理电力需求和建筑物发电,同时确保电网的运行约束。该方法考虑了每个建筑物的供暖,通风和空调单元,照明设备,光伏发电和能量存储系统的管理。通过一系列数学约束,为乘员提供了舒适的室内条件。此外,基于一组线性化技术和等效表示,提出了一种简化原始模型的策略,该策略是通过在EnergyPlus软件中执行的预处理阶段获得的。这种策略允许将建议的模型近似为可以使用商业求解器求解的混合整数线性规划公式。在具有不可管理的负载和智能建筑的不同确定性研究案例中,在13总线微电网中测试了提出的模型。还考虑了大型测试用例。最后,提出了滚动视野策略,旨在解决数据的不确定性,并减少所需的预测数据量。

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