Aguirre Erik, Led Santiago, Lopez-Iturri Peio, Azpilicueta Leyre, Serrano Luís, Falcone Francisco
Electrical and Electronic Engineering Department, Public University of Navarre, Pamplona 31006, Spain.
School of Engineering and Sciences, Tecnologico de Monterrey, Monterrey 64849, Mexico.
Sensors (Basel). 2016 Mar 1;16(3):310. doi: 10.3390/s16030310.
In this work, context aware scenarios applied to e-Health and m-Health in the framework of typical households (urban and rural) by means of deploying Social Sensors will be described. Interaction with end-users and social/medical staff is achieved using a multi-signal input/output device, capable of sensing and transmitting environmental, biomedical or activity signals and information with the aid of a combined Bluetooth and Mobile system platform. The devices, which play the role of Social Sensors, are implemented and tested in order to guarantee adequate service levels in terms of multiple signal processing tasks as well as robustness in relation with the use wireless transceivers and channel variability. Initial tests within a Living Lab environment have been performed in order to validate overall system operation. The results obtained show good acceptance of the proposed system both by end users as well as by medical and social staff, increasing interaction, reducing overall response time and social inclusion levels, with a compact and moderate cost solution that can readily be largely deployed.
在这项工作中,将描述通过部署社会传感器,在典型家庭(城市和农村)框架内应用于电子健康和移动健康的情境感知场景。使用多信号输入/输出设备实现与终端用户以及社会/医疗人员的交互,该设备能够借助蓝牙和移动系统组合平台来感知和传输环境、生物医学或活动信号及信息。充当社会传感器角色的这些设备经过实施和测试,以确保在多信号处理任务方面有足够的服务水平,以及在使用无线收发器和信道可变性方面具备稳健性。已在生活实验室环境中进行了初步测试,以验证整个系统的运行情况。所获得的结果表明,该系统提议得到了终端用户以及医疗和社会人员的良好认可,增加了互动,减少了总体响应时间并提高了社会包容度,且采用了紧凑且成本适中的解决方案,可轻松大规模部署。