New priority MAC protocol for wireless body area networks

N. Bradai, L. Chaari, S. Boudjit, L. Kamoun
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引用次数: 18

Abstract

The rapid advancements in wireless communication technologies and micro-electronics systems have fostered the development of small and intelligent micro-components that incorporate sensing devices and wireless communications into a single miniature circuit that are wearable or implementable inside the human body for the purpose of medical and healthcare applications. These components when deployed are mainly known as WBANs for Wireless Body Area Networks. One of the main issues in such networks is the medium access techniques mainly for those data which could be urgent. The design of a medium access control protocol for a WBAN is a challenge due to the characteristics of wireless channel, the diversity of traffic, access latency and the need for minimization of energy consumption. Based on the integrated super frame structure of IEEE 802.15.4 and IEEE 802.15.6, an hybrid medium access control protocol named Priority MAC (PMAC) is proposed in this paper. In PMAC protocol, data channels are separated from control channels and the priority is given to the life critical traffic (emergency traffic). Furthermore, a sleep mode is used in order to save energy of the wearable wireless sensors and hence increase their lifetime.
无线体域网络新的优先MAC协议
无线通信技术和微电子系统的快速发展促进了小型和智能微型元件的发展,这些元件将传感设备和无线通信集成到单个微型电路中,可穿戴或可在人体内实现,用于医疗和保健应用。这些组件在部署时主要被称为无线体域网络的wban。这种网络的主要问题之一是主要用于那些可能是紧急的数据的介质访问技术。由于无线信道的特性、业务的多样性、接入延迟以及对能耗最小化的要求,无线宽带网络的介质访问控制协议的设计是一个挑战。基于IEEE 802.15.4和IEEE 802.15.6的综合超帧结构,提出了一种混合介质访问控制协议PMAC (Priority MAC)。在PMAC协议中,数据通道与控制通道分离,优先考虑生命关键业务(应急业务)。此外,为了节省可穿戴无线传感器的能量,从而延长其使用寿命,使用了睡眠模式。
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