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Testing the accuracy of low-cost data streams for determining single-person office occupancy and their use for energy reduction of building services

机译:测试低成本数据流的准确性,以确定单人办公室的占用率并将其用于减少建筑物服务的能耗

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摘要

We explored methods of detecting occupancy in single-person offices using data already collected by the occupant\u2019s PC, or data from relatively cheap sensors added to the PC. We collected data at 15-s intervals for up to 31\u2009days in each of 28 offices. A combination of low/no cost sensors (webcam-based motion detection, and keyboard and mouse activity) was much more accurate at detecting occupancy than a commercial ceiling-based passive infrared (PIR) sensor, and provided overall daytime accuracy >90%, with very low false negative rates. This enhanced detection performance would enable a reduction in the timeout periods for building service curtailment on space vacancy. For example, lighting switch-off timeout could be reduced from the current energy code standard of 20 min to less than 5 min, increasing energy savings potential by 25\u201345%. We then deployed this system in a proof-of-concept demonstration, using it to control lighting, heating, ventilation, and air conditioning (HVAC), and plug loads in a mock-up office environment. Tests were run over nine occupied days (six in cooling season, three in heating season). The system delivered energy savings of 15\u201368%, with no reported false negative errors.
机译:我们探索了使用占用者PC已经收集的数据或来自添加到PC中的相对便宜的传感器的数据来检测单人办公室中占用情况的方法。我们在28个办公室中的每个办公室以31秒为间隔以15秒的间隔收集数据。低成本/无成本传感器(基于网络摄像头的运动检测以及键盘和鼠标活动)的组合比商用的基于天花板的无源红外(PIR)传感器在检测占用率方面更为精确,并且提供的总体白天准确性> 90%,假阴性率极低。这种增强的检测性能将能够减少用于缩减空位的建筑服务的超时时间。例如,可以将照明关闭超时从当前的能源法规标准20分钟减少到不到5分钟,从而将节能潜力提高了25%。然后,我们在概念验证演示中部署了该系统,用它来控制照明,供暖,通风和空调(HVAC),并在模拟办公室环境中插入负载。测试历时9天(制冷季节为6天,供暖季节为3天)。该系统节省了15%的电能,没有报告错误的否定错误。

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