Low-Power Ultrasonic Wake-Up and Communication through Structural Elements

Peter Oppermann, C. Renner
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引用次数: 4

Abstract

Research in ultra-low energy communication for wireless sensor networks mostly focuses on radio frequency (RF). Simple, low-cost, and low-power approaches for acoustic communication are typically not explored, although in a variety of applications acoustic communication using ultrasonic waves is preferable to RF. In others, motes are already equipped with sensors and actuators for acoustics. In this work, we present a method to communicate between motes on structural elements using piezoelectric discs. We demonstrate that data rates up to one kilobit per second are achievable with only minimal additional hardware. At the same time, the energy consumption for communication is reduced compared with popular RF methods.
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低功率超声唤醒与结构元件通信
无线传感器网络超低能量通信的研究主要集中在射频通信方面。简单、低成本和低功耗的声学通信方法通常没有被探索,尽管在各种应用中使用超声波的声学通信优于射频。在其他地方,mote已经配备了声学传感器和执行器。在这项工作中,我们提出了一种使用压电片在结构元件上的粒子之间进行通信的方法。我们证明,只需最少的额外硬件,就可以实现高达每秒1千比特的数据速率。同时,与目前流行的射频通信方式相比,降低了通信能耗。
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