超越占空比:唤醒无线电与选择性唤醒长寿命的无线传感系统

Dora Spenza, M. Magno, S. Basagni, L. Benini, M. Paoli, C. Petrioli
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引用次数: 136

摘要

新兴的唤醒无线电技术有可能将传感系统和物联网的性能提高到低延迟和极低能耗的水平,从而实现关键的新应用。本文为实现这一目标迈出了一步,具有双重贡献。我们首先描述了唤醒接收器(WRx)的设计和原型,以及它与无线传感器节点的集成。我们的WRx具有非常低的功耗(<;1.3μW),高灵敏度(高达-55dBm),快速反应性(唤醒时间为130μs)和选择性寻址,是新高性能协议的关键实现因素。然后,我们提出了ALBA-WUR,这是一种用于传感系统中数据收集的跨层解决方案,它重新设计了以前的领先协议ALBA-R,并对其进行了扩展,以利用我们的WRx的功能。我们通过模拟评估了ALBA-WUR的性能,表明使用WRx产生了显著的节能(高达五个数量级),并且在具有占空比的传感系统中实现了比ALBA-R长几十年的使用寿命,同时保持了延迟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Beyond duty cycling: Wake-up radio with selective awakenings for long-lived wireless sensing systems
Emerging wake-up radio technologies have the potential to bring the performance of sensing systems and of the Internet of Things to the levels of low latency and very low energy consumption required to enable critical new applications. This paper provides a step towards this goal with a twofold contribution. We first describe the design and prototyping of a wake-up receiver (WRx) and its integration to a wireless sensor node. Our WRx features very low power consumption (<; 1.3μW), high sensitivity (up to -55dBm), fast reactivity (wake-up time of 130μs), and selective addressing, a key enabler of new high performance protocols. We then present ALBA-WUR, a cross-layer solution for data gathering in sensing systems that redesigns a previous leading protocol, ALBA-R, extending it to exploit the features of our WRx. We evaluate the performance of ALBA-WUR via simulations, showing that the use of the WRx produces remarkable energy savings (up to five orders of magnitude), and achieves lifetimes that are decades longer than those obtained by ALBA-R in sensing systems with duty cycling, while keeping latencies at bay.
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