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Extraction method of typical IEQ spatial distributions based on low-rank sparse representation and multi-step clustering
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作者 Yuren Yang Yang Geng +3 位作者 Hao Tang mufeng yuan Juan Yu Borong Lin 《Building Simulation》 SCIE EI CSCD 2024年第6期983-1006,共24页
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 demo... 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. 展开更多
关键词 indoor environment quality(IEQ) thermal environment spatial distribution temperature field low-rank sparse representation(LRSR) CLUSTERING
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电流互感器红外故障热像图自动诊断方法 被引量:2
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作者 赵泽予 余强 +5 位作者 侯玉莲 高牧风 袁刚 陈诚 黄海洋 许志浩 《工业仪表与自动化装置》 2021年第6期78-82,共5页
相对温差法是电力设备红外图像故障诊断的定性方法,但该方法易将电压致热型缺陷误判或遗漏。因此,文中提出用目标检测算法做图像分割处理,结合自适应滑动窗口技术提取温度特征和坐标信息判断电流、电压致热故障的诊断方法。其过程是,以... 相对温差法是电力设备红外图像故障诊断的定性方法,但该方法易将电压致热型缺陷误判或遗漏。因此,文中提出用目标检测算法做图像分割处理,结合自适应滑动窗口技术提取温度特征和坐标信息判断电流、电压致热故障的诊断方法。其过程是,以目标检测算法的预测框坐标分割设备,设置自适应滑动窗口在分割后的图像中滑动,分别筛选出当前窗口中的最大温度值,将同位置中温度最小的一个作为设备的正常温度,其余的作为热点温度,根据窗口的位置判断热点温度的致热类型。以电流互感器为研究对象,根据致热类型相应的计算热点温度的相对温差或设备相同部位的温差来对设备进行诊断。实验表明,该方法最终能够对电流互感器的故障位置、故障类型和故障等级自动识别,能实现电流互感器故障的智能和高效诊断。 展开更多
关键词 红外图像 电流互感器 故障检测 图像分割
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