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基于具有多个外部无线传感器的智能手机的消耗分析的跌倒检测系统。

Consumption Analysis of Smartphone based Fall Detection Systems with Multiple External Wireless Sensors.

机构信息

Departamento de Tecnología Electrónica, Universidad de Málaga, ETSI Telecomunicación, 29071 Málaga, Spain.

出版信息

Sensors (Basel). 2020 Jan 22;20(3):622. doi: 10.3390/s20030622.

Abstract

Fall Detection Systems (FDSs) based on wearable technologies have gained much research attention in recent years. Due to the networking and computing capabilities of smartphones, these widespread personal devices have been proposed to deploy cost-effective wearable systems intended for automatic fall detection. In spite of the fact that smartphones are natively provided with inertial sensors (accelerometers and gyroscopes), the effectiveness of a smartphone-based FDS can be improved if it also exploits the measurements collected by small low-power wireless sensors, which can be firmly attached to the user's body without causing discomfort. For these architectures with multiple sensing points, the smartphone transported by the user can act as the core of the FDS architecture by processing and analyzing the data measured by the external sensors and transmitting the corresponding alarm whenever a fall is detected. In this context, the wireless communications with the sensors and with the remote monitoring point may impact on the general performance of the smartphone and, in particular, on the battery lifetime. In contrast with most works in the literature (which disregard the real feasibility of implementing an FDS on a smartphone), this paper explores the actual potential of current commercial smartphones to put into operation an FDS that incorporates several external sensors. This study analyzes diverse operational aspects that may influence the consumption (as the use of a GPS sensor, the coexistence with other apps, the retransmission of the measurements to an external server, etc.) and identifies practical scenarios in which the deployment of a smartphone-based FDS is viable.

摘要

基于可穿戴技术的跌倒检测系统 (FDS) 近年来受到了广泛关注。由于智能手机的网络和计算能力,这些广泛使用的个人设备已被提议用于部署具有成本效益的可自动检测跌倒的可穿戴系统。尽管智能手机本身配备了惯性传感器(加速度计和陀螺仪),但如果它还利用可以牢固地附着在用户身体上而不会引起不适的小型低功耗无线传感器收集的测量值,则基于智能手机的 FDS 的有效性可以得到提高。对于这些具有多个感测点的架构,用户携带的智能手机可以通过处理和分析外部传感器测量的数据,并在检测到跌倒时传输相应的警报,从而充当 FDS 架构的核心。在此上下文中,与传感器和远程监控点的无线通信可能会影响智能手机的整体性能,特别是电池寿命。与文献中的大多数工作(忽略了在智能手机上实现 FDS 的实际可行性)不同,本文探讨了当前商业智能手机实际投入运行包含多个外部传感器的 FDS 的潜力。本研究分析了可能影响消耗的各种操作方面(例如使用 GPS 传感器、与其他应用程序共存、将测量值重新传输到外部服务器等),并确定了基于智能手机的 FDS 部署可行的实际场景。

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