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摘要

Wireless sensor nodes spend most of the time waiting either for sensed data or for packets to be routed to the sink. While on board, sensors can raise hardware interrupts to trigger the wake-up of the processor, incoming packets require the radio module to be turned on in order to be properly received and processed; thus, reducing the effectiveness of dynamic power management and exposing the node to unintended packets cause energy waste. The capability of triggering the wake-up of a node over the air would makes it possible to keep the entire network asleep and to wake up the nodes along a path to the sink whenever there is a packet to transmit. This paper presents an ultrasonic wake-up trigger for ultra-low-power wireless sensor nodes developed as a plug-in module for VirtualSense motes. The module supports a simple out-of-band addressing scheme to enable the selective wake-up of a target node. In addition, it makes it possible to exploit the propagation speed of ultrasonic signals to perform distance measurements. The paper outlines the design choices, reports the results of extensive measurements, and discusses the additional degrees of freedom introduced by ultrasonic triggering in the power-state diagram of VirtualSense.
机译:无线传感器节点大部分时间都在等待数据或将数据包路由到接收器。在板上时,传感器会引发硬件中断以触发处理器唤醒,传入的数据包需要打开无线电模块才能正确接收和处理。因此,降低了动态电源管理的效率并将节点暴露于意外的数据包中会导致能源浪费。空中触发节点唤醒的能力将使整个网络保持睡眠状态,并在有数据包要传输时沿到接收器的路径唤醒节点。本文介绍了一种超低功耗无线传感器节点的超声唤醒触发器,该节点是作为VirtualSense节点的插件模块开发的。该模块支持简单的带外寻址方案,以实现目标节点的选择性唤醒。另外,可以利用超声信号的传播速度来执行距离测量。本文概述了设计选择,报告了广泛的测量结果,并讨论了在VirtualSense的电源状态图中超声触发引入的其他自由度。

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