论文标题

可扩展的非住宅HVAC和乘员行为表征的纵向热成像

Longitudinal thermal imaging for scalable non-residential HVAC and occupant behaviour characterization

论文作者

Ramani, Vasantha, Martin, Miguel, Arjunan, Pandarasamy, Chong, Adrian, Poolla, Kameshwar, Miller, Clayton

论文摘要

这项工作介绍了一项关于从城市规模红外(IR)天文台收集的非住宅建筑物的空调(AC)使用模式(AC)使用模式的研究。首先,实施了一种图像处理方案,用于清洁和从热图像中清理和提取温度时间序列。为了测试使用IR摄像机的热测量值的准确性,将提取的温度与地面真实表面温度测量值进行了比较。可以观察到,降解的热测量与地面真相温度测量非常匹配。随后,从热签名的分析中提取了水冷系统和窗户交流单元的操作模式。据观察,对于水冷系统,可以使用窗口变化速率和墙壁之间的差异来提取操作模式。而在窗口交流单元的情况下,AC单位温度的小波变换用于提取AC单位操作的频率和时间域信息。将分析结果与建筑物办公空间中安装的室内温度传感器进行了比较。人们意识到,在8 pm到10 am之间预测操作模式的准确性最高,并且由于太阳辐射和白天温度高,白天会减少。随后,对夜间收集的热图像的八个窗口/拆分AC单元进行了特征研究。这构成了使用纵向热成像技术的HVAC系统用于非住宅建筑物的HVAC系统的运营行为的最早研究之一。这项研究的输出可用于更好地理解运营和乘员行为,而无需在建筑空间中部署大量传感器。

This work presents a study on the characterization of the air-conditioning (AC) usage pattern of non-residential buildings from thermal images collected from an urban-scale infrared (IR) observatory. To achieve this first, an image processing scheme, for cleaning and extraction of the temperature time series from the thermal images is implemented. To test the accuracy of the thermal measurements using IR camera, the extracted temperature is compared against the ground truth surface temperature measurements. It is observed that the detrended thermal measurements match well with the ground truth surface temperature measurements. Subsequently, the operational pattern of the water-cooled systems and window AC units are extracted from the analysis of the thermal signature. It is observed that for the water-cooled system, the difference between the rate of change of the window and wall can be used to extract the operational pattern. While, in the case of the window AC units, wavelet transform of the AC unit temperature is used to extract the frequency and time domain information of the AC unit operation. The results of the analysis are compared against the indoor temperature sensors installed in the office spaces of the building. It is realized that the accuracy in the prediction of the operational pattern is highest between 8 pm to 10 am, and it reduces during the day because of solar radiation and high daytime temperature. Subsequently, a characterization study is conducted for eight window/split AC units from the thermal image collected during the nighttime. This forms one of the first studies on the operational behavior of HVAC systems for non-residential buildings using the longitudinal thermal imaging technique. The output from this study can be used to better understand the operational and occupant behavior, without requiring to deploy a large array of sensors in the building space.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源