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Delay and energy consumption analysis of priority guaranteed MAC protocol for wireless body area networks

机译:无线人体局域网优先保证MAC协议的时延和能耗分析

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Wireless body area networks are captivating growing interest because of their suitability for wide range of applications. However, network lifetime is one of the most prominent barriers in deploying these networks for most applications. Moreover, most of these applications have stringent QoS requirements such as delay and throughput. In this paper, the modified superframe structure of IEEE 802.15.4 based MAC protocol is proposed which addresses the aforementioned problems and improves the energy consumption efficiency. Moreover, priority guaranteed CSMA/CA mechanism is used where different priorities are assigned to body nodes by adjusting the data type and size. In order to save energy, a wake-up radio based mechanism to control sleep and active modes of body sensors are used. Furthermore, a discrete time finite state Markov model to find the node states is used. Analytical expressions are derived to model and analyze the behavior of average energy consumption, throughput, packet drop probability, and average delay during normal and emergency data. Extensive simulations are conducted for analysis and validation of the proposed mechanism. Results show that the average energy consumption and delay are relatively higher during emergency data transmission with acknowledgment mode due to data collision and retransmission.
机译:由于无线体域网适用于广泛的应用,因此引起了越来越多的兴趣。但是,网络寿命是在大多数应用程序中部署这些网络的最大障碍之一。而且,这些应用中的大多数都具有严格的QoS要求,例如延迟和吞吐量。本文提出了一种基于IEEE 802.15.4的MAC协议的改进超帧结构,解决了上述问题并提高了能耗效率。此外,使用优先级保证的CSMA / CA机制,其中通过调整数据类型和大小将不同的优先级分配给主体节点。为了节省能量,使用了基于唤醒无线电的机制来控制身体传感器的睡眠和活动模式。此外,使用离散时间有限状态马尔可夫模型来查找节点状态。导出了解析表达式,以对正常和紧急数据期间的平均能耗,吞吐量,丢包概率和平均延迟行为进行建模和分析。进行了广泛的仿真,以分析和验证所提出的机制。结果表明,由于数据冲突和重传,在具有确认模式的紧急数据传输过程中,平均能耗和延迟相对较高。

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