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Has time come to switch from duty-cycled MAC protocols to wake-up radio for wireless sensor networks?

机译:您是否有时间从占空比的maC协议转变为无线传感器网络的唤醒无线电?

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摘要

Duty-cycled Medium Access Control (MAC) protocols certainly improve the energy efficiency of wireless networks. However, most of these protocols still suffer from severe degrees of overhearing and idle listening. These two issues prevent optimum energy usage, a crucial aspect in energy-constrained wireless networks such as wireless sensor networks (WSNs). Wake-up radio (WuR) systems drastically reduce these problems by completely switching off the nodes' microcontroller unit (MCU) and main radio transceiver until a secondary, extremely low-power receiver is triggered by a particular wireless transmission, the so called wake-up call. Unfortunately, most WuR studies focus on theoretical platforms and/or custom-built simulators. Both these factors reduce the associated usefulness of the obtained results. In this paper, we model and simulate a real, recent, and promising WuR hardware platform developed by the authors. The simulation model uses time and energy consumption values obtained in the laboratory and does not rely on custom-built simulation engines, but rather on the OMNET++ simulator. The performance of the WuR platform is compared to four of the most well-known and widely employed MAC protocols for WSN under three real-world network deployments. The paper demonstrates how the use of our WuR platform presents numerous benefits in several areas, from energy efficiency and latency to packet delivery ratio and applicability, and provides the essential information for serious consideration of switching duty-cycled MAC-based networks to WuR.
机译:占空比媒体访问控制(MAC)协议肯定会提高无线网络的能效。但是,大多数这些协议仍然遭受严重程度的偷听和空闲监听。这两个问题阻止了最佳的能源使用,这是能源受限的无线网络(如无线传感器网络(WSN))中的关键方面。唤醒无线电(WuR)系统通过完全关闭节点的微控制器单元(MCU)和主无线电收发器,直到通过特定的无线传输触发了次要的,低功耗的接收器(所谓的唤醒),从而极大地减少了这些问题。打电话。不幸的是,大多数WuR研究集中在理论平台和/或定制模拟器上。这两个因素都降低了获得的结果的相关有用性。在本文中,我们对作者开发的真实,最新和有希望的WuR硬件平台进行建模和仿真。该仿真模型使用在实验室中获得的时间和能耗值,并且不依赖于定制的仿真引擎,而是依赖于OMNET ++仿真器。在三个实际网络部署下,将WuR平台的性能与用于WSN的四种最著名和使用最广泛的MAC协议进行了比较。本文演示了如何使用我们的WuR平台在从能源效率和等待时间到数据包传输率和适用性的多个领域带来诸多好处,并为认真考虑将基于占空比的MAC的网络切换到WuR提供必要的信息。

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