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Latency-Energy Optimized MAC Protocol for Body Sensor Networks

机译:体传感器网络的延迟能量优化MAC协议

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This paper presents a self organized asynchronous medium access control (MAC) protocol for wireless body area sensor (WBASN). The protocol is optimized in terms of latency and energy under variable traffic. A body sensor network (BSN) exhibits a wide range of traffic variations based on different physiological data emanating from the monitored patient. For example, electrocardiogram data rate is multiple times more in comparison with body temperature rate. In this context, we exploit the traffic characteristics being observed at each sensor node and propose a novel technique for latency-energy optimization at the MAC layer. The protocol relies on dynamic adaptation of wake-up interval based on a traffic status register bank. The proposed technique allows the wake-up interval to converge to a steady state for variable traffic rates, which results in optimized energy consumption and reduced delay during the communication. A comparison with other energy efficient protocols is presented. The results show that our protocol outperforms the other protocols in terms of energy as well as latency under the variable traffic of WBASN.
机译:本文介绍了用于无线体积传感器(WBASN)的自组织异步介质访问控制(MAC)协议。在可变流量下的延迟和能量方面优化了该协议。身体传感器网络(BSN)基于来自被监控患者发出的不同生理数据表现出广泛的业务变化。例如,与体温速率相比,心电图数据速率比较多。在这种情况下,我们利用在每个传感器节点处观察到的流量特性,并提出了一种新颖的用于MAC层的延迟能量优化技术。该协议依赖于基于流量状态寄存器库的唤醒间隔的动态调整。所提出的技术允许唤醒间隔收敛到可变业务速率的稳定状态,这导致通信期间的优化能量消耗和延迟降低。提出了与其他节能协议的比较。结果表明,我们的协议在能量方面优于其他协议以及WBASN的可变流量下的延迟。

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