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Development and evaluation of a comfort-oriented control strategy for thermal management of mixed-mode ventilated buildings

机译:混合舒适型通风建筑热管理舒适性控制策略的开发和评估

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The paper presents the development, implementation and performance investigation via simulations and experiments of a comfort-oriented control strategy for natural ventilation and mechanical air conditioning management of a mixed-mode building. The proposed comfort-oriented control strategy determines whether it would be possible to operate in natural ventilation mode or in mechanical heating/cooling. The control algorithm calculates first the optimal opening percentage of the windows according to adaptive thermal comfort criteria. If natural ventilation cannot guarantee the thermal comfort requirements and mechanical conditioning is required, the algorithm dynamically optimises the heating or cooling set-point targeting a defined Predicted Mean Vote (PMV) index objective. The performance of the proposed controller was tested via simulations and experiments by using a residential mixed-mode building as a case study. The house features operable windows, a reverse-cycle ducted air conditioner and a comprehensive experimental control and monitoring infrastructure. A comparison with a baseline control strategy was performed to evaluate the comfort and energy performance improvement potential of the proposed control algorithm. The comfort-oriented controller was proven to outperform the baseline controller in terms of maintaining comfort in accordance with targets set by the current comfort standards, such as deviation from a PMV set-point or the middle of the adaptive thermal comfort band. The building energy consumption was also reduced in cooling dominated conditions. The experimental tests demonstrated that this logic can be integrated in an embedded controller, and its performance is in line with the expected one from the simulation results. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文通过模拟和实验介绍了混合模式建筑的自然通风和机械空调管理的以舒适为导向的控制策略的开发,实施和性能调查。所提出的以舒适度为导向的控制策略确定了是否可以在自然通风模式下或在机械加热/冷却模式下运行。控制算法首先根据自适应热舒适度标准计算窗户的最佳打开百分比。如果自然通风不能保证满足热舒适性要求,并且需要进行机械调节,则该算法将以定义的预测平均投票(PMV)指标为目标动态优化加热或冷却设定点。通过使用住宅混合模式建筑作为案例研究,通过仿真和实验对提出的控制器的性能进行了测试。该房屋设有可操作的窗户,逆循环管道式空调和全面的实验控制与监控基础设施。与基线控制策略进行了比较,以评估所提出控制算法的舒适性和能量性能改善潜力。在根据当前舒适度标准设定的目标保持舒适度方面,以舒适度为导向的控制器已被证明优于基线控制器,例如偏离PMV设定点或自适应热舒适度带的中间值。在制冷为主的条件下,建筑能耗也有所降低。实验测试表明,该逻辑可以集成到嵌入式控制器中,其性能与仿真结果所预期的一致。 (C)2019 Elsevier B.V.保留所有权利。

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