利用物理位置将智能家电与超声波和低功耗蓝牙集成到非住宅建筑中

Jonathan Fürst, Kaifei Chen, Mohammad Al-Jarrah, Philippe Bonnet
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引用次数: 15

摘要

智能家电和传感器已经广泛使用。我们将它们部署在我们的家中,以管理舒适度、能源消耗或安全性。虽然这些智能家电正在成为现代家庭自动化系统不可或缺的一部分,但将它们集成到非住宅建筑中仍存在问题。事实上,智能家电供应商依赖于局域网(LAN)保证局部性和单一使用/管理单元的假设。这种假设在非住宅建筑中不满足,在非住宅建筑中,局域网基础设施可能覆盖一个或几个建筑,并且几个组织或功能单元位于同一位置。更糟糕的是,将智能设备直接耦合到互联网会带来一系列安全问题,因为设备所有者对其智能设备与外部服务交互的方式几乎没有控制权。为了解决这些问题,我们提出了一种将智能家电的使用和管理与物理位置相结合的解决方案。换句话说,我们建议智能家电可以通过智能手机访问,但只能从它们所在的房间访问。我们的解决方案结合了通过本地低功耗蓝牙(BLE)的机会性连接和基于超声波的房间级隔离方法。我们描述和评估了一个原型系统,部署在25个办公室和2个办公大楼的公共空间。这项工作为新的研究开辟了有趣的途径,重点是分散建筑管理中物理位置的表现和利用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Leveraging Physical Locality to Integrate Smart Appliances in Non-Residential Buildings with Ultrasound and Bluetooth Low Energy
Smart appliances and sensors have become widely available. We are deploying them in our homes to manage the level of comfort, energy consumption or security. While such smart appliances are becoming an integral part of modern home automation systems, their integration into non-residential buildings is problematic. Indeed, smart appliance vendors rely on the assumption that the Local Area Network (LAN) guarantees locality and a single unit of use/administration. This assumption is not met in non-residential buildings, where the LAN infrastructure might cover one or several buildings, and where several organizations or functional units are co-located. Worse, directly coupling smart appliances to the Internet opens up a range of security issues as device owners have very little control over the way their smart appliances interact with external services. In order to address these problems, we propose a solution that couples the use and management of smart appliances with physical locality. Put differently, we propose that smart appliances can be accessed via smartphones, but only from the room they are located in. Our solution combines opportunistic connectivity through local Bluetooth Low Energy (BLE) with an ultrasound-based method for room level isolation. We describe and evaluate a prototype system, deployed in 25 offices and 2 common spaces of an office building. This work opens up intriguing avenues for new research focused on the representation and utilization of physical locality for decentralized building management.
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