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Sensor-Driven Wireless Lighting Control: System Solutions and Services for Intelligent Buildings

机译:传感器驱动的无线照明控制:智能建筑的系统解决方案和服务

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摘要

We consider a wireless networked, sensor-driven lighting system as an enabling infrastructure for providing system solutions and services in intelligent buildings. The lighting system in an office space consists of multiple luminaires, with each luminaire having a co-located presence sensor, light sensor, and wireless radio for communication to a central controller. Information from these wireless sensors is used for realizing three specific solutions and services: 1) adaptive illumination control; 2) indoor positioning; and 3) building usage information maps. Using occupancy and light measurements from the multiple sensors, a multivariable controller is designed to determine dimming levels of the luminaires so as to achieve an illumination distribution adapted to changing occupancy and daylight. The wireless sensor transmissions to the central controller are captured by a user mobile device in terms of radio signal strength measurements. Using these measurements, the user position is determined by a device-centric positioning algorithm, in turn offering access to location-based building services to the user. Finally, sensor values at the central controller are stored in a database and processed by an analytics engine to offer building usage information services. As an embodiment service, we use presence sensor data for constructing occupancy maps and, in conjunction with light sensor data, to analyze the energy consumption patterns of lighting systems.
机译:我们将无线联网,传感器驱动的照明系统视为在智能建筑中提供系统解决方案和服务的基础架构。办公空间中的照明系统由多个照明器组成,每个照明器均具有位于同一位置的存在传感器,光传感器和用于与中央控制器通信的无线电设备。来自这些无线传感器的信息用于实现三种特定的解决方案和服务:1)自适应照明控制; 2)室内定位; 3)建立使用情况信息图。使用来自多个传感器的占用率和光测量值,设计了一个多变量控制器来确定照明设备的调光水平,从而获得适合于改变占用率和日光的照明分布。根据无线电信号强度测量,用户移动设备捕获到中央控制器的无线传感器传输。使用这些测量,可以通过以设备为中心的定位算法确定用户位置,进而为用户提供基于位置的建筑服务的访问权限。最后,中央控制器的传感器值存储在数据库中,并由分析引擎进行处理,以提供建筑物使用情况信息服务。作为一项实施服务,我们使用在场传感器数据来构建占用地图,并与光传感器数据结合使用,以分析照明系统的能耗模式。

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