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A 4-tiers architecture for mobile WBAN based health remote monitoring system

机译:基于移动WBAN的健康远程监控系统的4层架构

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Nowadays, remote monitoring systems (RMS) attract much attention for their usefulness in many fields of application such as in medical or terrain monitoring, sport, military etc. Thereby, many projects have been initiated and developed especially in health domain defining thus different architectures. As the RMSs are heterogeneous, their system model requires rigorous connections between involved modules and a non-dependent architecture of application should offer many advantages. This paper proposes 4-tiers architecture for health RMS to allow mobility of mobile tiers. On the one hand, it includes a traffic classes mapping function between WBAN and peer-networks. On the other hand it proposes the implementation of a priority weighted round robin scheduling technique at the coordinator for emergency and medical data with also vertical handoff decision making algorithm to sustain the mobility, what is so far the first suggestion according to our knowledge. Results of analysis and simulations show the impact of this architecture on the system in terms of mobility, end-to-end delay in peer-networks and waiting time especially for time-sensitive data flows.
机译:如今,远程监控系统(RMS)在许多应用领域(如医疗或地形监控,体育,军事等)的实用性引起了人们的广泛关注。因此,许多项目已经启动并开发,尤其是在卫生领域,定义了不同的体系结构。由于RMS是异构的,因此它们的系统模型要求所涉及的模块之间进行严格的连接,并且非依赖的应用程序体系结构应具有许多优点。本文提出了健康RMS的4层体系结构,以允许移动层的移动性。一方面,它包括WBAN与对等网络之间的流量类别映射功能。另一方面,它提出了在紧急情况和医疗数据协调器上实施优先权加权轮询调度技术,以及垂直切换决策算法来维持移动性,这是迄今为止根据我们的知识所提出的第一个建议。分析和仿真结果表明,该体系结构在移动性,对等网络中的端到端延迟以及等待时间(特别是对时间敏感的数据流)方面对系统有影响。

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