Application of energy combined thermal comfort in intelligent building management in complex environments

Q2 Energy Energy Informatics Pub Date : 2024-07-03 DOI:10.1186/s42162-024-00355-x
Xiaoyu Wang
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引用次数: 0

Abstract

The efficient operation of heating ventilation and air conditioning systems relies on advanced control strategies. However, current control methods are often limited by issues such as uncertain system parameter information and spatial coupling constraints related to the supply rate of the air supply fan. To this end, an energy joint thermal comfort management method for complex environments in multiple regions is proposed. The long-term total cost minimization of the system is established, and then the Lyapunov optimization technology is used to design the distributed control algorithm. Simulation validation shows that the proposed method reduces the energy cost by an average of 11.24% compared to other methods with a thermal discomfort cost coefficient of 0. The average temperature deviation in the area is improved by 0.15 °C and 0.68 °C, respectively. The method saves more than 10% of the total energy cost under different thermal perturbations with an average total temperature deviation of 0.04 °C. The results indicate that the proposed energy joint thermal comfort management method can flexibly balance energy costs and user thermal comfort without knowing any prior information of system parameters, which can also greatly protect user privacy information. This method has application value in the control of heating ventilation and air conditioning systems in complex environments such as commercial buildings.
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在复杂环境下的智能楼宇管理中应用能源综合热舒适技术
供暖通风和空调系统的高效运行有赖于先进的控制策略。然而,目前的控制方法往往受限于不确定的系统参数信息和与送风机送风速率相关的空间耦合约束等问题。为此,我们提出了一种针对多区域复杂环境的能源联合热舒适管理方法。首先确定了系统的长期总成本最小化,然后利用 Lyapunov 优化技术设计了分布式控制算法。仿真验证表明,与其他热不适成本系数为 0 的方法相比,所提出的方法平均降低了 11.24% 的能源成本。在不同的热扰动条件下,该方法节省的总能源成本超过 10%,平均总温度偏差为 0.04 °C。结果表明,所提出的能源联合热舒适度管理方法可以在事先不知道任何系统参数信息的情况下,灵活地平衡能源成本和用户热舒适度,还能极大地保护用户隐私信息。该方法在商业建筑等复杂环境下的供热通风和空调系统控制中具有应用价值。
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来源期刊
Energy Informatics
Energy Informatics Computer Science-Computer Networks and Communications
CiteScore
5.50
自引率
0.00%
发文量
34
审稿时长
5 weeks
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