基于乘员中心控制的智能建筑节能实验对比研究

IF 7.1 1区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Building and Environment Pub Date : 2024-11-26 DOI:10.1016/j.buildenv.2024.112322
Irfan Qaisar , Wei Liang , Kailai Sun , Tian Xing , Qianchuan Zhao
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引用次数: 0

摘要

建筑约占全球能源消耗和温室气体排放的三分之一。准确的入住率数据对于实现节能控制策略和提高建筑物舒适度至关重要。然而,目前大多数关于多区域占用中心控制(OCC)的研究都依赖于模拟的占用数据,而不是真实的占用数据。此外,现有的基于occ的暖通空调系统在动态室内环境下的最佳运行间隔尚未得到充分的探索。本研究提出了一项广泛的实验研究,评估了多区域实际OCC系统对多区域建筑节能和舒适的影响。我们使用基于视觉的方法收集了真实世界的占用数据,并开发了HVAC控制策略,使用5、10、15、30和60分钟的运行间隔来评估它们对能源效率和占用者舒适度的影响。使用OpenStudio和EnergyPlus进行模拟。结果表明,定制的运行间隔显著提高了能源效率和乘员舒适度。在动态环境中,较短的间隔可以有效地节省能源,而在更稳定的环境中,较长的间隔可以提高舒适性和能源效率。这项研究证明了OCC系统在优化能源使用和舒适度方面的有效性,并为未来建筑管理策略的发展奠定了基础。还讨论了一些新兴趋势,例如将大型语言模型集成到OCC中,以供将来探索。
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An experimental comparative study of energy saving based on occupancy-centric control in smart buildings
Buildings account for approximately one-third of global energy consumption and greenhouse gas emissions. Accurate occupancy data is critical for enabling energy-efficient control strategies and enhancing comfort in buildings. However, most current research on multi-zone occupancy-centric control (OCC) relies on simulated rather than real-world occupancy data. Additionally, the optimal operational intervals of existing OCC-based HVAC systems have not been fully explored in dynamic indoor environments. This study presents an extensive experimental study evaluating the impact of multi-zone real-world OCC systems on energy conservation and comfort in a multi-zone building. We collected real-world occupancy data using vision-based methods and developed HVAC control strategies using operational intervals of 5, 10, 15, 30, and 60 min to evaluate their effects on energy efficiency and occupant comfort. Simulations were performed using OpenStudio with EnergyPlus. The results indicate that customized operational intervals significantly improve both energy efficiency and occupant comfort. Shorter intervals can provide effective energy savings in dynamic settings, while longer intervals yield improved comfort and energy efficiency in more stable environments. This study demonstrates the effectiveness of OCC systems in optimizing energy usage and comfort and sets the stage for future developments in building management strategies. Emerging trends, such as integrating large language models into OCC, are also discussed for future exploration.
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来源期刊
Building and Environment
Building and Environment 工程技术-工程:环境
CiteScore
12.50
自引率
23.00%
发文量
1130
审稿时长
27 days
期刊介绍: Building and Environment, an international journal, is dedicated to publishing original research papers, comprehensive review articles, editorials, and short communications in the fields of building science, urban physics, and human interaction with the indoor and outdoor built environment. The journal emphasizes innovative technologies and knowledge verified through measurement and analysis. It covers environmental performance across various spatial scales, from cities and communities to buildings and systems, fostering collaborative, multi-disciplinary research with broader significance.
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