Extraction method of typical IEQ spatial distributions based on low-rank sparse representation and multi-step clustering

IF 6.1 1区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Building Simulation Pub Date : 2024-03-18 DOI:10.1007/s12273-024-1117-6
Yuren Yang, Yang Geng, Hao Tang, Mufeng Yuan, Juan Yu, Borong Lin
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Abstract

Indoor environment quality (IEQ) is one of the most concerned building performances during the operation stage. The non-uniform spatial distribution of various IEQ parameters in large-scale public buildings has been demonstrated to be an essential factor affecting occupant comfort and building energy consumption. Currently, IEQ sensors have been widely employed in buildings to monitor thermal, visual, acoustic and air quality. However, there is a lack of effective methods for exploring the typical spatial distribution of indoor environmental quality parameters, which is crucial for assessing and controlling non-uniform indoor environments. In this study, a novel clustering method for extracting IEQ spatial distribution patterns is proposed. Firstly, representation vectors reflecting IEQ distributions in the concerned space are generated based on the low-rank sparse representation. Secondly, a multi-step clustering method, which addressed the problems of the “curse of dimensionality”, is designed to obtain typical IEQ distribution patterns of the entire indoor space. The proposed method was applied to the analysis of indoor thermal environment in Beijing Daxing international airport terminal. As a result, four typical temperature spatial distribution patterns of the terminal were extracted from a four-month monitoring, which had been validated for their good representativeness. These typical patterns revealed typical environmental issues in the terminal, such as long-term localized overheating and temperature increases due to a sudden influx of people. The extracted typical IEQ spatial distribution patterns could assist building operators in effectively assessing the uneven distribution of IEQ space under current environmental conditions, facilitating targeted environmental improvements, optimization of thermal comfort levels, and application of energy-saving measures.

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基于低秩稀疏表示和多步聚类的典型 IEQ 空间分布提取方法
室内环境质量(IEQ)是运行阶段最受关注的建筑性能之一。大型公共建筑中各种 IEQ 参数的非均匀空间分布已被证明是影响居住舒适度和建筑能耗的重要因素。目前,IEQ 传感器已被广泛应用于建筑中,以监测热、视觉、声学和空气质量。然而,目前还缺乏探索室内环境质量参数典型空间分布的有效方法,而这对于评估和控制不均匀的室内环境至关重要。本研究提出了一种提取室内环境质量空间分布模式的新型聚类方法。首先,根据低秩稀疏表示法生成反映相关空间中 IEQ 分布的表示向量。其次,针对 "维度诅咒 "问题,设计了一种多步骤聚类方法,以获得整个室内空间的典型 IEQ 分布模式。该方法被应用于北京大兴国际机场航站楼的室内热环境分析。结果,从为期四个月的监测中提取了四个典型的航站楼温度空间分布模式,并验证了其良好的代表性。这些典型模式揭示了航站楼的典型环境问题,如长期局部过热和人流骤增导致的温度升高。所提取的典型 IEQ 空间分布模式可以帮助建筑运营者有效评估当前环境条件下 IEQ 空间的不均匀分布,促进有针对性的环境改善、热舒适度优化和节能措施的应用。
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来源期刊
Building Simulation
Building Simulation THERMODYNAMICS-CONSTRUCTION & BUILDING TECHNOLOGY
CiteScore
10.20
自引率
16.40%
发文量
0
审稿时长
>12 weeks
期刊介绍: Building Simulation: An International Journal publishes original, high quality, peer-reviewed research papers and review articles dealing with modeling and simulation of buildings including their systems. The goal is to promote the field of building science and technology to such a level that modeling will eventually be used in every aspect of building construction as a routine instead of an exception. Of particular interest are papers that reflect recent developments and applications of modeling tools and their impact on advances of building science and technology.
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