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Low-Power Wake-Up Radio for Wireless Sensor Networks

机译:用于无线传感器网络的低功耗唤醒无线电

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摘要

Power consumption is a critical issue in many wireless sensor network scenarios where network life expectancy is measured in months or years. Communication protocols typically rely on synchronous operation and duty-cycle mechanisms to reduce the power usage at the cost of decreased network responsiveness and increased communication latency. A low-power radio-triggered device can be used to continuously monitor the channel and activate the node for incoming communications, allowing purely asynchronous operations. To be effective, the power consumption of this wake-up device must be on the order of tens of microwatts since this device is always active. This paper presents our first attempt at designing such a low-power receiver. Very few realizations of wake-up devices are reported in the literature and none presents power dissipation below 40 μW. Our design implements a complete wake-up device and initial results indicate an average power consumption below 20 μW, which is more than 2 times lower than other reported devices.
机译:功耗是许多无线传感器网络方案中的关键问题,在这些方案中,网络预期寿命以月或年为单位。通信协议通常依赖于同步操作和占空比机制来降低功耗,但代价是网络响应性下降和通信延迟增加。低功率无线电触发设备可用于连续监视信道并激活节点以进行传入通信,从而实现纯异步操作。为了有效,此唤醒设备的功耗必须处于数十微瓦的级别,因为该设备始终处于活动状态。本文介绍了我们在设计这种低功率接收器方面的首次尝试。文献中报道了很少有唤醒设备的实现,并且没有一种实现低于40μW的功耗。我们的设计实现了完整的唤醒设备,初步结果表明平均功耗低于20μW,比其他报告的器件低2倍以上。

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