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Ultra Low Power Wake-Up Radios: A Hardware and Networking Survey

机译:超低功耗唤醒无线电:硬件和网络调查

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摘要

In wireless environments, transmission and reception costs dominate system power consumption, motivating research effort on new technologies capable of reducing the footprint of the radio, paving the way for the Internet of Things. The most important challenge is to reduce power consumption when receivers are idle, the so called idle-listening cost. One approach proposes switching off the main receiver, then introduces new wake-up circuitry capable of detecting an incoming transmission, optionally discriminating the packet destination using addressing, then switching on the main radio only when required. This wake-up receiver technology represents the ultimate frontier in low power radio communication. In this paper, we present a comprehensive literature review of the research progress in wake-up radio (WuR) hardware and relevant networking software. First, we present an overview of the WuR system architecture, including challenges to hardware design and a comparison of solutions presented throughout the last decade. Next, we present various medium access control and routing protocols as well as diverse ways to exploit WuRs, both as an extension of pre-existing systems and as a new concept to manage low-power networking.
机译:在无线环境中,传输和接收成本支配着系统功耗,从而推动了对新技术的研究工作,这些新技术能够减少无线电的占用空间,为物联网铺平道路。最重要的挑战是降低接收机空闲时的功耗,即所谓的空闲监听成本。一种方法是建议关闭主接收器,然后引入新的唤醒电路,该电路能够检测传入的传输,可以选择通过寻址来区分数据包目的地,然后仅在需要时才打开主无线电。这种唤醒接收器技术代表了低功率无线电通信的终极前沿。在本文中,我们提供了有关唤醒无线电(WuR)硬件和相关网络软件的研究进展的综合文献综述。首先,我们概述了WuR系统架构,包括对硬件设计的挑战以及过去十年中提出的解决方案的比较。接下来,我们将介绍各种媒体访问控制和路由协议以及各种利用WuR的方法,既可以作为现有系统的扩展,又可以作为管理低功耗网络的新概念。

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