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EnergyPlus model-based predictive control within design-build-operate energy information modelling infrastructure

机译:设计,建造,运营的能源信息建模基础架构中基于EnergyPlus模型的预测控制

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This study proposes a design-build-operate energy information modelling (DBO-EIM) infrastructure to allow users to deploy the design-stage building energy model for model predictive control (MPC) system in the building operation. A newly constructed office building is studied as a test bed. An EnergyPlus model-based predictive control (EPMPC) system is designed and simulated in the Matlab/Simulink environment within the DBO-EIM infrastructure. EPMPC aims at minimizing heating, ventilation, and air conditioning energy consumption while maintaining occupant thermal comfort. Compared to the baseline rule-based control system, EPMPC demonstrates a 28.9% energy reduction in one-week simulation in the heating season and 2.7% energy reduction in one-week simulation in the cooling season. The comfort constraint is met during more than 90% of the simulated hours. The study demonstrates one significant contribution of the DBO-EIM infrastructure that a design-stage EnergyPlus model can be integrated in an MPC system and the preliminary simulation results are satisfactory.
机译:这项研究提出了一种设计-建造-运营能源信息建模(DBO-EIM)基础架构,以允许用户在建筑运营中为模型预测控制(MPC)系统部署设计阶段的建筑能源模型。研究了新建的办公楼作为测试台。在DBO-EIM基础架构内的Matlab / Simulink环境中设计并仿真了基于EnergyPlus模型的预测控制(EPMPC)系统。 EPMPC旨在最大限度地减少供暖,通风和空调的能耗,同时保持乘员的热舒适性。与基于基准规则的控制系统相比,EPMPC在供暖季节的一周模拟中能耗降低了28.9%,在制冷季节的一周模拟中能耗降低了2.7%。在超过90%的模拟时间内达到了舒适性约束。这项研究证明了DBO-EIM基础设施的一项重大贡献,即可以将设计阶段的EnergyPlus模型集成到MPC系统中,并且初步的仿真结果令人满意。

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