唤醒无线电作为传统无线传感器网络MAC协议的节能替代方案

J. Oller, I. Demirkol, J. Casademont, J. Aspas, G. U. Gamm, L. Reindl
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引用次数: 24

摘要

在介质访问控制(MAC)协议中使用占空循环可以有效地提高无线网络的能源效率。然而,虽然这些协议的好处是毋庸置疑的,但它们中的大多数仍然存在偷听和空闲监听的问题,这两个问题阻碍了占空比系统实现最佳的能源利用,这是无线传感器网络(WSN)等特定类型无线网络的关键方面。唤醒无线电(WuR)系统最近被用于克服这些问题。在这种方法下,节点的微控制器单元(MCU)和主无线电收发器完全关闭,只有当节点中的次级极低功耗接收器被特定的无线传输触发时才会激活。唤醒无线电系统允许大幅节省能源,因为接收器节点只按需激活,最大限度地延长了电池寿命。在本文中,我们基于其时间和能量消耗特性,对一个真实的、最新的、有前途的WuR硬件平台进行了建模和仿真。通过将这种WuR方法与B-MAC和IEEE 802.15.4这两种众所周知且广泛使用的MAC协议进行比较,我们发现它在能效方面有效地优于传统的WSN MAC方法。据作者所知,这是第一项对基于真实WuR平台的多跳网络进行比较分析的研究,该研究表明,WuR系统代表了一种节能的解决方案,该解决方案还提供了延迟,数据包传输率和适用性之间的良好权衡。
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Wake-up radio as an energy-efficient alternative to conventional wireless sensor networks MAC protocols
The use of duty-cycling in Medium Access Control (MAC) protocols effectively helps improving the energy efficiency of wireless networks. However, while the benefits of these protocols are unquestionable, most of them still suffer from overhearing and idle listening, two issues that prevent duty-cycled systems from achieving optimum energy usage, which is a crucial aspect in specific types of wireless networks such as Wireless Sensor Networks (WSN).Wake-up Radio (WuR) systems have been employed recently to overcome these issues. Under this approach, the nodes' MicroController Unit (MCU) and main radio transceiver are completely switched off and only activated when a secondary, extremely low-power receiver in the node is triggered by a particular wireless transmission. Wake-up Radio systems allow for drastic energy savings since receiver nodes are only activated on-demand, maximizing their battery lifetimes. In this paper, we have modeled and simulated a real, recent and promising WuR hardware platform based on its time and energy consumption characterization. By comparing such WuR approach to B-MAC and IEEE 802.15.4, two well-known and widely employed MAC protocols, we show it effectively out-performs the conventional WSN MAC approaches in terms of energy efficiency. To the best of authors' knowledge, this is the first study to include a comparative analysis for multi-hop networks based on a real WuR platform, which shows WuR systems represent an energy-efficient solution that also provides a good tradeoff between latency, packet delivery ratio and applicability..
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