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MAC-network cross-layer energy optimization model for Wireless Body Area Networks

机译:无线人体局域网的MAC网络跨层能量优化模型

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In recent years, Wireless Body Area Networks (WBANs) have gained increasing interest in the research community and become an emerging technology, especially in healthcare services. This position paper focuses on the energy optimization issue and the joint routing and MAC protocols in WBANs. We extend upon our previous model on the Energy-Aware Topology Design for WBANs (EAWD), so as to include PHY and MAC-layer WBAN specifications. Indeed, EAWD model considered the topology constraints by minimizing the number of relay nodes, in order to reduce the total energy consumption, as well as the total network installation cost. Yet, EAWD involved quite rough assumptions, omitting overhead considerations, due to MAC routing and physical clear channel assessment problems. Therefore, we first introduce the EAWD model and discuss its limitations. Then, we present our proposal, the Enhanced EAWD (EEAWD), and assess its performance through a synthesis comparison with EAWD and related proposals in the literature.
机译:近年来,无线人体局域网(WBAN)在研究界越来越受到关注,并成为一种新兴技术,尤其是在医疗保健服务领域。该立场文件重点关注WBAN中的能源优化问题以及联合路由和MAC协议。我们扩展了先前关于WBAN的能量感知拓扑设计(EAWD)的模型,以包括PHY和MAC层WBAN规范。实际上,EAWD模型通过最小化中继节点的数量来考虑拓扑约束,以减少总能耗以及总网络安装成本。但是,由于MAC路由和物理畅通信道评估问题,EAWD包含了相当粗略的假设,省略了开销方面的考虑。因此,我们首先介绍EAWD模型并讨论其局限性。然后,我们提出我们的建议,即增强型EAWD(EEAWD),并通过与EAWD和相关文献中的建议进行综合比较来评估其性能。

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