体耦合通信网络的低功耗介质访问控制

S. Corroy, H. Baldus
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引用次数: 7

摘要

身体耦合通信(BCC)是一种很有前途的技术,它使无线通信能够围绕并局限于人体。它包括在人体表面产生低功率电场来传输信号。它的物理层(PHY)与经典射频(RF)物理层(如IEEE 802.15.4)相比有几个优点,例如对身体区域网络(ban)具有更好的健壮性和更高的能量效率。从介质访问控制(MAC)的角度来看,BCC BAN网络是无线传感器网络(wsn)的一个子类。由于无线传感器网络节点是电池供电的设备,能量容量有限,因此能源效率是许多应用的关键要求。低功耗MAC协议是实现这种需求的组件之一。然而,目前科学界开发的解决方案仅针对射频系统。BCC物理层的属性是这样的,使用这些解决方案将导致低效的能源使用。因此,我们开发并在本文中提出了一种新的MAC协议,该协议考虑了BCC物理层的特定属性。与最先进的协议相比,当应用于BCC系统时,AdaMAC在可靠性、延迟和能效方面表现更好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low power medium access control for body-coupled communication networks
Body-coupled communication (BCC) is a promising technology that enables wireless communication around and limited to the human body. It consists in generating low-power electric fields at the surface of the human body for transmiting signals. Its physical (PHY) layer has several advantages over classical radio frequency (RF) PHY layers, e.g., IEEE 802.15.4, for body-area networks (BANs), like a better robustness to body shadowing and a greater energy efficiency. From the medium access control (MAC) point of view, BCC BAN networks are a sub-class of wireless sensor networks (WSNs). Because WSN nodes are battery-powered device with limited energy capacity, energy efficiency is a key requirement for many applications. A low power MAC protocol is one of the component that enables to fulfill such a requirement. However current solutions developed so far by the scientific community are solely targeting RF systems. The properties of the BCC PHY layer are such that using those solutions would lead to inefficient energy usage. Therefore we developed and present in this paper AdaMAC a new MAC protocol that takes into account the specific properties of the BCC PHY layer. Compared to state-of-the-art protocols AdaMAC performs better in terms of reliability, latency and energy efficiency when applied to BCC systems.
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