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An ultra low power high sensitivity wake-up radio receiver with addressing capability

机译:具有寻址能力的超低功耗高灵敏度唤醒无线电接收机

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In power-limited wireless devices such as wireless sensor networks, wearable components, and Internet of Things devices energy efficiency is a critical concern. These devices are usually battery operated and have a radio transceiver that is typically their most power-hungry block. Wake-up radio schemes can be used to achieve a reasonable balance among energy consumption, range, data receiving capabilities and response time. In this paper, a high-sensitivity low power wake-up radio receiver (WUR) for wireless sensor networks is presented. The wake-up radio is comprised of a fully passive differential RF-to-DC converter that rectifies the incident RF signal, a low-power comparator and an ultra low power microcontroller to detects the envelope of the on-off keying (OOK) wake-up data used as address. We designed and implemented a novel low power tunable wake up radio with addressing capability, a minimal power consumption of only 196nW and a maximum sensitivity of -55dBm and minimal wake up time of 130μs without addressing and around 1,6ms with 2byte addressing at 10Kbit/s data rate. The flexibility of the solution makes the wake up radio suitable for both power constrained low range application (such as Body Area Network) or applications with long range needs. The wake up radio can work also at different frequencies and the addressing capability directly on board helps reduce false positives. Experimental on field results demonstrate the low power of the solution, the high sensitivity and the functionality.
机译:在功率受限的无线设备(例如无线传感器网络,可穿戴组件和物联网设备)中,能源效率是至关重要的问题。这些设备通常由电池供电,并具有通常是最耗电的模块的无线电收发器。唤醒无线电方案可用于在能耗,范围,数据接收能力和响应时间之间实现合理的平衡。本文提出了一种用于无线传感器网络的高灵敏度低功率唤醒无线电接收机(WUR)。唤醒无线电包括一个完全无源的差分RF-DC转换器,用于整流入射的RF信号,一个低功耗比较器和一个超低功耗微控制器,用于检测开关键控(OOK)唤醒的包络-up数据用作地址。我们设计并实现了具有寻址能力的新型低功耗可调谐唤醒无线电设备,其最小功耗仅为196nW,最大灵敏度为-55dBm,最小不唤醒时间为130μs(无寻址),大约1,6ms,2byte寻址速度为10Kbit /的数据速率。该解决方案的灵活性使唤醒无线电适用于功率受限的低距离应用(例如人体局域网)或具有长距离需求的应用。唤醒无线电还可以在不同的频率下工作,直接在板上的寻址能力有助于减少误报。现场实验结果证明了该解决方案的低功耗,高灵敏度和功能性。

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