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Experimental characterisation of energy consumption in Body Area Networks

机译:人体局域网中能量消耗的实验表征

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This paper addresses the issue of power consumption in the field of Wireless Body Area Networks (WBAN). It presents a methodology used to perform real-time measurements of the energy consumption of a deployed WBAN, and describes how to design Medium Access Control (MAC) protocols, able to satisfy different application requirements in terms of lifetime, but also of latency. More precisely we analyse the performance of two MAC protocols, one based on low power listening and the other one based on the IEEE 802.15.6 standard, and we discuss their applicability to two specific scenarios. The evaluation is performed through experiments carried out on a hardware platform intended for WBANs, while the application scenarios are inspired by those defined in the FP7 EC Project, WiserBAN. Results obtained allow us to draw conclusions and considerations regarding energy consumption in realistic scenarios and provide significant inputs to WBAN designers.
机译:本文解决了无线人体局域网(WBAN)领域中的功耗问题。它提供了一种用于对部署的WBAN的能耗进行实时测量的方法,并描述了如何设计能够在生命周期以及延迟方面满足不同应用要求的媒体访问控制(MAC)协议。更准确地说,我们分析了两种MAC协议的性能,一种基于低功耗侦听,另一种基于IEEE 802.15.6标准,我们讨论了它们在两种特定情况下的适用性。评估是通过在针对WBAN的硬件平台上进行的实验进行的,而应用场景则受到FP7 EC项目WiserBAN中定义的场景的启发。获得的结果使我们能够得出有关现实情况下能耗的结论和考虑,并为WBAN设计人员提供重要的投入。

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