A Novel Wake-Up Receiver with Addressing Capability for Wireless Sensor Nodes

C. Petrioli, Dora Spenza, P. Tommasino, A. Trifiletti
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引用次数: 35

Abstract

Emerging low-power radio triggering techniques for wireless motes are a promising approach to prolong the lifetime of Wireless Sensor Networks (WSNs). By allowing nodes to activate their main transceiver only when data need to be transmitted or received, wake-up-enabled solutions virtually eliminate the need for idle listening, thus drastically reducing the energy toll of communication. In this paper we describe the design of a novel wake-up receiver architecture based on an innovative pass-band filter bank with high selectivity capability. The proposed concept, demonstrated by a prototype implementation, combines both frequency-domain and time-domain addressing space to allow selective addressing of nodes. To take advantage of the functionalities of the proposed receiver, as well as of energy-harvesting capabilities modern sensor nodes are equipped with, we present a novel wake-up-enabled harvesting-aware communication stack that supports both interest dissemination and converge casting primitives. This stack builds on the ability of the proposed WuR to support dynamic address assignment, which is exploited to optimize system performance. Comparison against traditional WSN protocols shows that the proposed concept allows to optimize performance tradeoffs with respect to existing low-power communication stacks.
一种具有寻址能力的无线传感器节点唤醒接收器
新兴的低功耗无线触发技术是延长无线传感器网络(WSNs)寿命的一种很有前途的方法。通过允许节点仅在需要传输或接收数据时激活其主收发器,启用唤醒的解决方案实际上消除了空闲侦听的需要,从而大大减少了通信的能量消耗。本文介绍了一种基于高选择性通带滤波器组的唤醒接收机结构设计。提出的概念,通过原型实现证明,结合频域和时域寻址空间,允许节点的选择性寻址。为了利用所提出的接收器的功能,以及现代传感器节点所具备的能量收集能力,我们提出了一种新的支持兴趣传播和收敛转换原语的唤醒感知通信堆栈。该堆栈建立在提议的WuR支持动态地址分配的能力之上,利用动态地址分配来优化系统性能。与传统WSN协议的比较表明,所提出的概念允许优化相对于现有的低功耗通信堆栈的性能权衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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