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Improving energy efficiency through activity-aware control of office appliances using proximity sensing - A real-life study

机译:通过使用感应感应对办公设备进行活动感知控制来提高能源效率-一项现实生活研究

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摘要

Energy efficiency is a key operational characteristic of today's office environments. In this paper, we present a system architecture to control desk appliances such as computer screens based on recognised desk and computer work activities. In a real-life intervention study at seven desks, we use screen-attached ultrasound sensors and explore a proximity-based activity recognition approach for saving energy by automatically turing computer screens off when not using them. We analyse online performance of our approach regarding recognition rate and screen resume delay. Furthermore, we present a comparative analysis of our proximity-controlled approach against the computer-controlled power management and a non-controlled baseline to quantify energy saving benefits. Our results show energy savings of up to 43% and 55% for proximity-controlled computer screens compared to computer-controlled and non-controlled scenarios respectively.
机译:能源效率是当今办公环境的关键运营特征。在本文中,我们提出了一种基于公认的办公桌和计算机工作活动来控制办公桌设备(如计算机屏幕)的系统体系结构。在七个办公桌上进行的一项现实生活干预研究中,我们使用了附有屏幕的超声波传感器,并探索了一种基于邻近度的活动识别方法,通过在不使用计算机屏幕时自动关闭计算机屏幕来节省能源。我们分析了我们的方法在识别率和屏幕恢复延迟方面的在线性能。此外,我们对我们的接近控制方法与计算机控制的电源管理以及非控制基准进行了比较分析,以量化节能收益。我们的结果表明,与计算机控制和非控制方案相比,接近控制的计算机屏幕分别节省多达43%和55%的能源。

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