D2MAC: Dynamic delayed Medium Access Control (MAC) protocol with fuzzy technique for Wireless Body Area Networks

Nesa Mouzehkesh, T. Zia, Saman Shafigh, Lihong Zheng
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引用次数: 16

Abstract

Wireless Body Area Networks (WBAN) have emerged as an extension to conventional wireless sensor networks in recent years to comply with the needs in providing timely and effective response in healthcare as one of the many target applications such networks have. The traffic of a WBAN is diverse due to different monitoring tasks carried on by sensor nodes. It brings difficulty in how to efficiently organize the access to the medium for the dynamic and various generated traffic. This paper analyses the traffic diversity problem in WBAN for healthcare applications and proposes a dynamic delayed Medium Access Control (MAC) algorithm. A fuzzy logic system is used to incorporate both application and protocol related parameters of the real time traffic to make the backoff time produced in IEEE 802.15.4 MAC protocol traffic adaptive. The simulation results demonstrate a significant reliability in packet transmissions and decrease in the latency with no change in energy consumption level.
基于模糊技术的无线体域网络动态延迟介质访问控制(MAC)协议
近年来,无线体域网络(WBAN)作为传统无线传感器网络的扩展而出现,以满足医疗保健中提供及时有效响应的需求,这是无线体域网络的众多目标应用之一。由于传感器节点所承担的监控任务不同,无线宽带网络的流量也不同。这给动态的、多变的网络流量如何有效地组织对媒体的访问带来了困难。分析了医疗卫生无线宽带网络中的业务分集问题,提出了一种动态延迟介质访问控制(MAC)算法。为了使IEEE 802.15.4 MAC协议流量产生的回退时间自适应,采用模糊逻辑系统将实时流量的应用和协议相关参数融合在一起。仿真结果表明,在不改变能耗水平的情况下,数据包传输具有显著的可靠性和延迟的降低。
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