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Theoretical and Experimental Approach for the Design of an Optical Wireless Physical Activity Monitoring System

机译:光学无线身体活动监测系统设计的理论和实验方法

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We propose in this paper, an optical wireless communicating accelerometer-based system for physical activity level monitoring. Optical wireless technology presents the advantage to be secure regarding electromagnetic interference, low-cost and easy to deploy. Considering a mobile patient, we theoretically investigate the performance in terms of packet failure in a specific environment. We study in particular the impact of the optical source directivity, the emitted optical power, the position of the motion sensor device on the body, and the number of optical receivers fixed on the room ceiling. The theoretical results are compared with experimental measurements for several configurations using a custom-made wearable communicating device. This permits validating optical wireless technology efficiency for physical activity monitoring and showing that it exists an optimal value of half-power angle of the transmitter to insure the optical wireless performance whatever the coverage and the height of the device over the body are. At last, we illustrate the trade-off between emitted power and number of active receivers.
机译:我们在本文中提出了一种基于光学无线通信加速度计的系统,用于身体活动水平监控。光学无线技术具有电磁干扰安全,成本低廉且易于部署的优势。考虑到移动患者,我们从理论上研究了在特定环境中数据包故障的性能。我们特别研究了光源方向性,发射的光功率,运动传感器设备在人体上的位置以及固定在房间天花板上的光接收器数量的影响。使用定制的可穿戴通信设备将几种配置的理论结果与实验测量结果进行比较。这允许验证光学无线技术的效率以进行体育活动监控,并表明存在一个发射机半功率角的最佳值,以确保无论设备在身体上的覆盖范围和高度如何,都能确保光学无线性能。最后,我们说明了发射功率与有效接收器数量之间的权衡。

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