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Activity-Aware Energy-Efficient Automation of Smart Buildings

机译:智能建筑的活动感知型节能自动化

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This paper introduces the idea of activity-aware cyber-physical systems (CPS). Activity-aware systems allow smart city services to adapt to the needs of individual residents by being sensitive to their daily tasks. The paper first defines activity recognition and activity prediction algorithms that form the foundation of activity-aware CPS and implement a prototype activity-aware building automation system, called CASAS activity aware resource learning (CARL). Evaluation of CARL on real sensor data shows not only an accurate ability to sense and predict activities but an effective means of automation buildings that reduces energy consumption while being sensitive to user activities in the building. Our ideas are demonstrated in the context of a smart home but can be utilized in a variety of smart city settings including smart offices, smart hospitals, and smart communities.
机译:本文介绍了活动感知的网络物理系统(CPS)的思想。通过活动感知系统,智能城市服务可以通过对居民的日常任务保持敏感来适应其需求。本文首先定义了活动识别和活动预测算法,这些算法构成了活动感知CPS的基础,并实现了原型活动感知建筑自动化系统,称为CASAS活动感知资源学习(CARL)。对真实传感器数据上的CARL进行评估不仅显示了感知和预测活动的准确能力,而且还显示了降低建筑物能耗,同时对建筑物中的用户活动敏感的自动化建筑物的有效手段。我们的想法在智能家居环境中得到了证明,但可以在各种智能城市环境中使用,包括智能办公室,智能医院和智能社区。

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