用于医疗保健应用程序的基于IEEE 802.15.6的节点和集线器体系结构

Hadda Ben Elhadj, S. Boudjit, L. Chaari, L. Kamoun
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引用次数: 4

摘要

电子和集成电路的最新进展促进了无线体域网络(wban)的发展,使其成为向患者提供无处不在的医疗保健监测服务的关键技术。操作环境和处理数据的特殊性使wban与其他网络相比是独一无二的。因此,IEEE 802组织建立了一个名为TG6的任务组,用于wban的标准化。TG6小组已经定义了IEEE 802.15.6标准,确切地说是物理层(PHY)和介质访问控制层(MAC) WBAN层。此外,TG6指出,必须设计两个逻辑管理实体,它们与定义的PHY和MAC层以及其他层交换网络管理信息。提出了一种基于IEEE 802.15.6标准的节点管理实体(NME)和集线器管理实体(HME)体系结构。我们提出的HME和NME架构结合了交叉和模块化设计架构,以确保网络可靠性和提高WBAN的服务质量(QoS)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IEEE 802.15.6 based node and hub architectures for healthcare applications
Recent advances in electronics and integrated circuits have fostered the development of Wireless Body Area Networks (WBANs) as a key technology to provide ubiquitous healthcare monitoring services to patients. The specificities of the operating environment and treated data make WBANs unique compared to other networks. Consequently, IEEE 802 organization has established a Task Group called TG6 for the standardization of WBANs. The TG6 group has defined the IEEE 802.15.6 standard or precisely a Physical (PHY) and Medium Access Control (MAC) WBAN Layers. Also, the TG6 stated that two logical management entities that exchange network management information with the defined PHY and MAC layers as well as with other layers have to be designed. This paper presents a Node Management Entity (NME) and a Hub Management Entity (HME) architectures based on IEEE 802.15.6 standard. Our proposed HME and NME architectures combine cross and modular design architecture to ensure network reliability and enhance the WBAN Quality of Service (QoS).
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