A low-power opportunistic communication protocol for wearable applications

A. Gaglione, Shanshan Chen, Benny P. L. Lo, Guang-Zhong Yang
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引用次数: 1

Abstract

Recent trends in wearable applications demand flexible architectures being able to monitor people while they move in free-living environments. Current solutions use either store-download-offline processing or simple communication schemes with real-time streaming of sensor data. This limits the applicability of wearable applications to controlled environments (e.g, clinics, homes, or laboratories), because they need to maintain connectivity with the base station throughout the monitoring process. In this paper, we present the design and implementation of an opportunistic communication framework that simplifies the general use of wearable devices in free-living environments. It relies on a low-power data collection protocol that allows the end user to opportunistically, yet seamlessly manage the transmission of sensor data. We validate the feasibility of the framework by demonstrating its use for swimming, where the normal wireless communication is constantly interfered by the environment.
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用于可穿戴应用的低功耗机会通信协议
可穿戴应用的最新趋势要求灵活的架构能够在人们在自由生活环境中移动时进行监控。目前的解决方案要么使用存储-下载-离线处理,要么使用传感器数据实时流的简单通信方案。这限制了可穿戴应用在受控环境(如诊所、家庭或实验室)的适用性,因为它们需要在整个监测过程中保持与基站的连接。在本文中,我们提出了一个机会主义通信框架的设计和实现,该框架简化了可穿戴设备在自由生活环境中的一般使用。它依赖于低功耗数据收集协议,允许最终用户随意地无缝管理传感器数据的传输。我们通过演示其在游泳中的使用来验证该框架的可行性,其中正常的无线通信不断受到环境的干扰。
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