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An open and reconfigurable wireless sensor network for pervasive health monitoring.

机译:一个开放且可重新配置的无线传感器网络,用于全面的健康监控。

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OBJECTIVES: Sensor networks constitute the backbone for the construction of personalized monitoring systems. Up to now, several sensor networks have been proposed for diverse pervasive healthcare applications, which are however characterized by a significant lack of open architectures, resulting in closed, non-interoperable and difficult to extend solutions. In this context, we propose an open and reconfigurable wireless sensor network (WSN) for pervasive health monitoring, with particular emphasis in its easy extension with additional sensors and functionality by incorporating embedded intelligence mechanisms. METHODS: We consider a generic WSN architecture comprised of diverse sensor nodes (with communication and processing capabilities) and a mobile base unit (MBU) operating as the gateway between the sensors and the medical personnel, formulating this way a body area network (BAN). The primary focus of this work is on the intra-BAN data communication issues, adopting SensorML as the data representation mean, including the encoding of the monitoring patterns and the functionality of the sensor network. RESULTS: In our prototype implementation two sensor nodes are emulated; one for heart rate monitoring and the other for blood glucose observations, while the MBU corresponds to a personal digital assistant (PDA) device. Java 2 Micro Edition (J2ME) is used to implement both the sensor nodes and the MBU components. Intra-BAN wireless communication relies on the Blue-tooth protocol. Via an adaptive user interface in the MBU, health professionals may specify the monitoring parameters of the WSN and define the monitoring patterns of interest in terms of rules. CONCLUSIONS: This work constitutes an essential step towards the construction of open, extensible, inter-operable and intelligent WSNs for pervasive health monitoring.
机译:目标:传感器网络构成构建个性化监控系统的骨干。到目前为止,已经提出了几种传感器网络,用于各种普遍的医疗保健应用,但是其特征是明显缺乏开放式架构,导致封闭,不可互操作且难以扩展的解决方案。在这种情况下,我们提出了一个开放且可重新配置的无线传感器网络(WSN),用于普遍的健康状况监视,尤其强调通过结合嵌入式智能机制,轻松扩展附加传感器和功能。方法:我们考虑一种通用的WSN架构,该架构由各种传感器节点(具有通信和处理功能)和作为传感器和医务人员之间网关的移动基本单元(MBU)组成,以此方式构成了人体局域网(BAN) 。这项工作的主要重点是在禁区内的数据通信问题,采用SensorML作为数据表示手段,包括监视模式的编码和传感器网络的功能。结果:在我们的原型实现中,模拟了两个传感器节点。一个用于心率监测,另一个用于血糖观察,而MBU对应于个人数字助理(PDA)设备。 Java 2 Micro Edition(J2ME)用于实现传感器节点和MBU组件。 BAN内部无线通信依赖于蓝牙协议。通过MBU中的自适应用户界面,卫生专业人员可以指定WSN的监视参数,并根据规则定义感兴趣的监视模式。结论:这项工作构成了构建开放,可扩展,可互操作和智能的WSN的关键步骤,以进行全面的健康监测。

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