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Implementing and Evaluating a Wireless Body Sensor System for Automated Physiological Data Acquisition at Home

机译:在家中实施和评估用于自动生理数据采集的无线人体传感器系统

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摘要

Advances in embedded devices and wireless sensor networks have resulted in new and inexpensive health care solutions. This paper describes the implementation and the evaluation of a wireless body sensor system that monitors human physiological data at home. Specifically, a waist-mounted triaxial accelerometer unit is used to record human movements. Sampled data are transmitted using an IEEE 802.15.4 wireless transceiver to a data logger unit. The wearable sensor unit is light, small, and consumes low energy, which allows for inexpensive and unobtrusive monitoring during normal daily activities at home. The acceleration measurement tests show that it is possible to classify different human motion through the acceleration reading. The 802.15.4 wireless signal quality is also tested in typical home scenarios. Measurement results show that even with interference from nearby IEEE 802.11 signals and microwave ovens, the data delivery performance is satisfactory and can be improved by selecting an appropriate channel. Moreover, we found that the wireless signal can be attenuated by housing materials, home appliances, and even plants. Therefore, the deployment of wireless body sensor systems at home needs to take all these factors into consideration.
机译:嵌入式设备和无线传感器网络的进步导致了新的和廉价的医疗保健解决方案。本文介绍了一种无线人体传感器系统的实现和评估,该系统可在家中监测人体生理数据。具体而言,腰部安装的三轴加速度计单元用于记录人体运动。采样的数据使用IEEE 802.15.4无线收发器传输到数据记录器单元。穿戴式传感器单元重量轻,体积小,能耗低,因此在日常的日常家庭活动中可以进行廉价且无干扰的监视。加速度测量测试表明,可以通过加速度读数对不同的人体运动进行分类。 802.15.4无线信号质量也在典型的家庭场景中进行了测试。测量结果表明,即使受到附近IEEE 802.11信号和微波炉的干扰,数据传输性能也令人满意,并且可以通过选择合适的信道来改善数据传输性能。此外,我们发现无线信号可能会被房屋材料,家用电器甚至植物衰减。因此,在家中无线人体传感器系统的部署需要考虑所有这些因素。

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