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Multisensor Adaptive Control System for IoT- Em powered Smart Lighting with Oblivious Mobile Sensors

机译:适用于IoT- Em供电的智能照明的多传感器自适应控制系统,带有隐蔽的移动传感器

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The Internet-of-Things (IoT) has engendered a new paradigm of integrated sensing and actuation systems for intelligent monitoring and control of smart homes and buildings. One viable manifestation is that of IoT-empowered smart lighting systems, which rely on the interplay between smart light bulbs (equipped with controllable LED devices and wireless connectivity) and mobile sensors (possibly embedded in users' wearable devices such as smart watches, spectacles, and gadgets) to provide automated illuminance control functions tailored to users' preferences (e.g., of brightness, color intensity, or color temperature). Typically, practical deployment of these systems precludes the adoption of sophisticated but costly location-aware sensors capable of accurately mapping out the details of a dynamic operational environment. Instead, cheap oblivious mobile sensors are often utilized, which are plagued with uncertainty in their relative locations to sensors and light bulbs. The imposed volatility, in turn, impedes the design of effective smart lighting systems for uncertain indoor environments with multiple sensors and light bulbs. With this in view, the present article sheds light on the adaptive control algorithms and modeling of such systems. First, a general model formulation of an oblivious multisensor illuminance control problem is proposed, yielding a robust framework agnostic to a dynamic surrounding environment and time-varying background light sources. Under this model, we devise efficient algorithms inducing continuous adaptive lighting control that minimizes energy consumption of light bulbs while meeting users' preferences. The algorithms are then studied under extensive empirical evaluations in a proof-of-concept smart lighting testbed featuring LIFX programmable bulbs and smartphones (deployed as light sensing units). Lastly, we conclude by discussing the potential improvements in hardware development and highlighting promising directions for future work.
机译:物联网(IoT)引发了一种集成的传感和驱动系统的新范例,用于智能监视和控制智能家居和建筑物。一种可行的体现是采用物联网的智能照明系统,它依赖于智能灯泡(配有可控制的LED设备和无线连接)和移动传感器(可能嵌入用户的可穿戴设备(例如,智能手表,眼镜,和小工具),以提供根据用户偏好(例如亮度,色强度或色温)定制的自动照度控制功能。通常,这些系统的实际部署会阻止采用能够精确映射动态操作环境细节的复杂但昂贵的位置感知传感器。取而代之的是,通常使用廉价的,遗忘的移动传感器,这种移动传感器相对于传感器和灯泡的相对位置存在不确定性。反过来,所施加的波动性阻碍了针对具有多个传感器和灯泡的不确定室内环境的有效智能照明系统的设计。有鉴于此,本文阐明了这种系统的自适应控制算法和建模。首先,提出了一个遗忘的多传感器照度控制问题的通用模型,提出了一个与动态周围环境和时变背景光源无关的健壮框架。在此模型下,我们设计了有效的算法,该算法可引发连续的自适应照明控制,从而在满足用户喜好的同时将灯泡的能耗降至最低。然后,在具有LIFX可编程灯泡和智能手机(部署为光感测单元)的概念验证智能照明测试平台中,在广泛的经验评估下研究算法。最后,我们通过讨论硬件开发的潜在改进并强调未来工作的有希望的方向来作总结。

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