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A Standard-Based and Context-Aware Architecture for Personal Healthcare Smart Gateways

机译:用于个人医疗保健智能网关的基于标准和上下文感知的体系结构

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The rising availability of Personal Health Devices (PHDs) capable of Personal Network Area (PAN) communication and the desire of keeping a high quality of life are the ingredients of the Connected Health vision. In parallel, a growing number of personal and portable devices, like smartphones and tablet computers, are becoming capable of taking the role of health gateway, that is, a data collector for the sensor PHDs. However, as the number of PHDs increase, the number of other peripherals connected in PAN also increases. Therefore, PHDs are now competing for medium access with other devices, decreasing the Quality of Service (QoS) of health applications in the PAN. In this article we present a reference architecture to prioritize PHD connections based on their state and requirements, creating a healthcare Smart Gateway. Healthcare context information is extracted by observing the traffic through the gateway. A standard-based approach was used to identify health traffic based on ISO/IEEE 11073 family of standards. A reference implementation was developed showing the relevance of the problem and how the proposed architecture can assist in the prioritization. The reference Smart Gateway solution was integrated with a Connected Health System for the Internet of Things, validating its use in a real case scenario.
机译:能够进行个人网络区域(PAN)通信的个人健康设备(PHD)的可用性不断提高以及保持高质量生活的愿望是互联健康愿景的要素。同时,越来越多的个人和便携式设备(例如智能手机和平板电脑)开始能够充当健康网关的角色,即传感器PHD的数据收集器。但是,随着PHD数量的增加,PAN中连接的其他外围设备的数量也会增加。因此,PHD现在正在与其他设备争夺媒体访问权限,从而降低了PAN中健康应用程序的服务质量(QoS)。在本文中,我们提供了一种参考体系结构,可根据PHD连接的状态和要求确定其优先级,从而创建医疗智能网关。通过观察通过网关的流量来提取医疗保健上下文信息。基于ISO / IEEE 11073系列标准的基于标准的方法用于识别健康流量。开发了一个参考实现,显示了问题的相关性以及所提出的体系结构可以如何帮助确定优先级。参考Smart Gateway解决方案已与物联网互联健康系统集成在一起,从而验证了其在实际案例中的使用。

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