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Non-intrusive interpretation of human thermal comfort through analysis of facial infrared thermography

机译:通过面部红外热成像分析对人体热舒适性的非侵入式解释

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Understanding occupants' thermal sensation and comfort is essential to defining the operational settings for Heating, Ventilation and Air Conditioning (HVAC) systems in buildings. Due to the continuous impact of human and environmental factors, occupants' thermal sensation and comfort level can change over time. Thus, to dynamically control the environment, thermal comfort should be monitored in real time. This paper presents a novel non-intrusive infrared thermography framework to estimate an occupant's thermal comfort level by measuring skin temperature collected from different facial regions using low-cost thermal cameras. Unlike existing methods that rely on placing sensors directly on humans for skin temperature measurement, the proposed framework is able to detect the presence of occupants, extract facial regions, measure skin temperature features, and interpret thermal comfort conditions with minimal interruption of the building occupants. The method is validated by collecting thermal comfort data from a total of twelve subjects under cooling, heating and steady-state experiments. The results demonstrate that ears, nose and cheeks are most indicative of thermal comfort and the proposed framework can be used to assess occupants' thermal comfort with an average accuracy of 85%. (C) 2018 Elsevier B.V. All rights reserved.
机译:了解居住者的热感觉和舒适性对于定义建筑物中的采暖,通风和空调(HVAC)系统的运行设置至关重要。由于人为因素和环境因素的持续影响,乘员的热感和舒适度会随着时间而变化。因此,为了动态控制环境,应实时监控热舒适度。本文提出了一种新颖的非侵入式红外热成像框架,可通过使用低成本热像仪测量从不同面部区域收集的皮肤温度来估算乘员的热舒适水平。与依赖于将传感器直接放置在人体上以进行皮肤温度测量的现有方法不同,所提出的框架能够在最小程度地干扰建筑人员的情况下检测居住者的存在,提取面部区域,测量皮肤温度特征并解释热舒适条件。通过在冷却,加热和稳态实验下从总共十二名受试者中收集热舒适性数据来验证该方法。结果表明,耳朵,鼻子和脸颊最能代表人的热舒适性,所提出的框架可用于评估乘员的热舒适性,平均准确度为85%。 (C)2018 Elsevier B.V.保留所有权利。

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