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Analysis of a Smartphone-Based Architecture with Multiple Mobility Sensors for Fall Detection

机译:基于智能手机的具有多个移动性传感器的跌倒检测架构的分析

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摘要

During the last years, many research efforts have been devoted to the definition of Fall Detection Systems (FDSs) that benefit from the inherent computing, communication and sensing capabilities of smartphones. However, employing a smartphone as the unique sensor in a FDS application entails several disadvantages as long as an accurate characterization of the patient’s mobility may force to transport this personal device on an unnatural position. This paper presents a smartphone-based architecture for the automatic detection of falls. The system incorporates a set of small sensing motes that can communicate with the smartphone to help in the fall detection decision. The deployed architecture is systematically evaluated in a testbed with experimental users in order to determine the number and positions of the sensors that optimize the effectiveness of the FDS, as well as to assess the most convenient role of the smartphone in the architecture.
机译:在过去的几年中,许多研究工作都致力于跌倒检测系统(FDS)的定义,这些定义得益于智能手机固有的计算,通信和传感功能。但是,将智能手机用作FDS应用程序中的唯一传感器会带来一些缺点,只要准确描述患者的活动能力可能会迫使其将其移动到不自然的位置。本文提出了一种基于智能手机的架构,用于自动检测跌倒。该系统集成了一组小型感应节点,可以与智能手机通信,以帮助您确定跌倒检测。已部署的架构在实验用户的测试平台上进行了系统评估,以确定可优化FDS有效性的传感器的数量和位置,并评估智能手机在架构中的最便捷作用。

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