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Passive wake-up radios: from devices to applications

机译:被动唤醒无线电:从设备到应用程序

摘要

Energy efficiency is one of the most important criteria in the design of a wireless sensor network. Sensor nodes are usually battery-powered and thus have very limited lifetime. In this paper, we introduce a novel passive wake-up radio device named WISP-Mote that uses a passive RFID tag as a wake-up receiver for a traditional sensor node. We characterize the WISP-Mote with field tests in different operating environments and present the wake-up probabilities based on the distance between the wake-up transmitter and receiver. We then perform simulations to compare the performance of a network with WISP-Motes and with duty-cycling of the sensor nodes, using the wake-up probabilities measured in our field tests. Additionally, potential applications that can benefit from WISP-Motes are discussed, and the advantages of using WISP-Motes are identified by simulation results based on these application scenarios. Results show that the wake-up radio sensor networks have great potential over duty-cycling approaches for energy efficiency, while providing similar latency and packet delivery performances. © 2013 Elsevier B.V. All rights reserved.
机译:能源效率是无线传感器网络设计中最重要的标准之一。传感器节点通常由电池供电,因此使用寿命非常有限。在本文中,我们介绍了一种名为WISP-Mote的新型无源唤醒无线电设备,该设备使用无源RFID标签作为传统传感器节点的唤醒接收器。我们通过在不同操作环境下的现场测试来表征WISP-Mote,并根据唤醒发射器和接收器之间的距离来介绍唤醒概率。然后,我们使用在现场测试中测得的唤醒概率,进行仿真以比较具有WISP-Motes和传感器节点的占空比的网络性能。此外,还讨论了可以从WISP-Motes中受益的潜在应用程序,并基于这些应用程序场景的仿真结果确定了使用WISP-Motes的优势。结果表明,唤醒无线电传感器网络具有比占空比方法更高的能效潜力,同时具有类似的等待时间和数据包传递性能。 ©2013 Elsevier B.V.保留所有权利。

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