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Experimental setup and testing of an in-field system for realtime occupant feedback

机译:实际系统实时占用反馈的实验设置和测试

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Thermal comfort and air quality in buildings have been found to be the 2nd and 5th largest sources of complaints among occupants in modern office buildings. In building operation, the determination of control set-points is normally based on a combination of theoretical models and feedback from occupants. The feedback is most often unstructured and based on face-to-face information transfer, costing time for building operators and with no possibility for systematic learning over time. In practice, operating temperature ranges as small as 1-2°C are usually adopted in order to prevent complaints from occupants in office buildings. Research has however shown that narrow temperature ranges do not result in higher occupant satisfaction, and several researchers have proposed that control of buildings should be done based on continuous subjective feedback from the occupants in the building. This article covers the design and proof of concept for a non-intrusive system for continuous occupant feedback in offices. The system consists of a feedback terminal for capturing day-to day overall satisfaction with indoor climate, a smart phone based system for capturing personal comfort thresholds, and physical measurements of room temperature and CO2 level. Longitudinal tests were conducted in selected rooms in two buildings near Oslo in Norway, measuring a total of 20 office desks in regular use over 3-5 months. The findings indicate that this simple and inexpensive system collects information about the occupant's perception of the indoor climate. Further work must be done to give this information value for building control and learning.
机译:热舒适度和建筑空气质量已经发现,在现代办公楼乘客投诉中的第2和第5大来源。在构建操作中,控制设置点的确定通常是根据从乘员的理论模型的组合和反馈。反馈是最常见的非结构化和基于人脸对脸信息传递,时间成本为建设运营商和不可能性随着时间的系统学习。在实践中,工作温度范围,小至1-2℃,以便防止在办公楼居住者投诉通常采用。然而,研究表明,窄的温度范围不会导致更高的乘客满意度,一些研究人员提出,建筑物的控制应根据从大楼住户连续主观反馈来完成。本文介绍了设计和概念证明的非侵入式系统,可在办公室连续乘客反馈。该系统由用于捕捉一天到一天的总体满意度与室内气候,用于捕获个人的舒适性阈值的智能手机为基础的系统,以及室温和二氧化碳水平的物理测量反馈终端。纵向测试在选择客房在挪威奥斯陆附近两座建筑物进行,在3-5个月测量共20张办公桌经常使用。研究结果表明,这种简单和廉价的系统收集有关室内环境的乘员感知信息。进一步的工作必须做给楼宇控制和学习这些信息的价值。

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