Rohan Tabish, A. M. Ghaleb, Rima Hussein, F. Touati, A. Ben Mnaouer, L. Khriji, M. Rasid
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引用次数: 40
摘要
无所不在的医疗保健(U-healthcare)系统有望提供灵活而有弹性的高端技术解决方案,实现对患者健康状况的实时远程监控,并由医疗保健提供者提供反馈和远程操作。在本文中,我们提出了一个基于6LowPAN的u -医疗保健平台,有助于实现上述期望。该系统包括两个传感器节点,将温度数据和心电信号发送到远程处理单元。这些传感器被分配了一个IPv6地址,以实现物联网(IoT)功能。连接到PC的支持6lowpan的边缘路由器通过串行接口充当基站,从传感器节点收集数据。此外,通过串行线- internet协议(serial - line - internet protocol, SLIP)在PC上运行的程序提供了一个接收来自边缘路由器的IPv6数据包的网络接口。通过让应用程序将来自传感器的读数保存到一个文件中,该文件可以由远程服务器使用免费云服务(如UbuntuOne)下载,从而增强了上述系统。这一增强功能使系统能够可靠地防止数据丢失,特别是对于户外医疗保健服务,其中3G/4G连接可能因信号质量波动而丢失。该系统提供了成功远程u -医疗监控的概念验证,说明了物联网功能,并涉及3G/4G连接,同时通过基于云的备份进行增强。
A 3G/WiFi-enabled 6LoWPAN-based U-healthcare system for ubiquitous real-time monitoring and data logging
Ubiquitous healthcare (U-healthcare) systems are expected to offer flexible and resilient high-end technological solutions enabling remote monitoring of patients health status in real-time and provisioning of feedback and remote actions by healthcare providers. In this paper, we present a 6LowPAN based U-healthcare platform that contributes to the realization of the above expectation. The proposed system comprises two sensor nodes sending temperature data and ECG signals to a remote processing unit. These sensors are being assigned an IPv6 address to enable the Internet-of-Things (IoT) functionality. A 6LowPAN-enabled edge router, connected to a PC, is serving as a base station through a serial interface, to collect data from the sensor nodes. Furthermore, a program interfacing through a Serial-Line-Internet-Protocol (SLIP) and running on the PC provides a network interface that receives IPv6 packets from the edge router. The above system is enhanced by having the application save readings from the sensors into a file that can be downloaded by a remote server using a free Cloud service such as UbuntuOne. This enhancement makes the system robust against data loss especially for outdoor healthcare services, where the 3G/4G connectivity may get lost because of signal quality fluctuations. The system provided a proof of concept of successful remote U-healthcare monitoring illustrating the IoT functionality and involving 3G/4G connectivity while being enhanced by a cloud-based backup.