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An ultra low-power and traffic-adaptive medium access control protocol for wireless body area network

机译:无线人体局域网的超低功耗和流量自适应媒体访问控制协议

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Wireless Body Area Network (WBAN) consists of low-power, miniaturized, and autonomous wireless sensor nodes that enable physicians to remotely monitor vital signs of patients and provide real-time feedback with medical diagnosis and consultations. It is the most reliable and cheaper way to take care of patients suffering from chronic diseases such as asthma, diabetes and cardiovascular diseases. Some of the most important attributes of WBAN is low-power consumption and delay. This can be achieved by introducing flexible duty cycling techniques on the energy-constraint sensor nodes. Stated otherwise, low duty cycle nodes should not receive frequent synchronization and control packets if they have no data to send/receive. In this paper, we introduce a Traffic-adaptive MAC protocol (TaMAC) by taking into account the traffic information of the sensor nodes. The protocol dynamically adjusts the duty cycle of the sensor nodes according to their traffic-patterns, thus solving the idle listening and overhearing problems. The traffic-patterns of all sensor nodes are organized and maintained by the coordinator. The TaMAC protocol is supported by a wakeup radio that is used to accommodate emergency and ondemand events in a reliable manner. The wakeup radio uses a separate control channel along with the data channel and therefore it has considerably low power consumption requirements. Analytical expressions are derived to analyze and compare the performance of the TaMAC protocol with the well-known beacon-enabled IEEE 802.15.4 MAC, WiseMAC, and SMAC protocols. The analytical derivations are further validated by simulation results. It is shown that the TaMAC protocol outperforms all other protocols in terms of power consumption and delay.
机译:无线人体局域网(WBAN)由低功耗,小型化且自主的无线传感器节点组成,使医生能够远程监视患者的生命体征并通过医学诊断和咨询提供实时反馈。这是治疗患有慢性疾病(例如哮喘,糖尿病和心血管疾病)的患者的最可靠,最便宜的方法。 WBAN的一些最重要的属性是低功耗和延迟。这可以通过在能量约束传感器节点上引入灵活的占空比循环技术来实现。换句话说,如果低占空比节点没有数据要发送/接收,则它们不应接收频繁的同步和控制数据包。在本文中,我们考虑到传感器节点的流量信息,引入了流量自适应MAC协议(TaMAC)。该协议根据其流量模式动态调整传感器节点的占空比,从而解决了空闲的监听和监听问题。所有传感器节点的流量模式均由协调器组织和维护。 TaMAC协议由唤醒无线电支持,该无线电用于以可靠的方式适应紧急事件和按需事件。唤醒无线电与数据信道一起使用单独的控制信道,因此它具有相当低的功耗要求。导出分析表达式以分析和比较TaMAC协议与众所周知的启用信标的IEEE 802.15.4 MAC,WiseMAC和SMAC协议的性能。仿真结果进一步验证了分析推导。结果表明,TaMAC协议在功耗和延迟方面优于所有其他协议。

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