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Beyond the limits of classic backscattering communications: A quantum tunneling RFID tag

机译:超越经典反向散射通信的极限:量子隧道RFID标签

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Sensor networks, radio-equipped drones, and satellites are widely used to retrieve sensor data in many applications such as health care, smart cities and precision agriculture. Nevertheless, the high-power costs of communication per distance unit lead to poor technical solutions, particularly in terms of flexibility and efficiency. A future of devices connected through an Internet of Things (IoT) network will require billions of sensors that will affect costs and increase the energy requirements if not equipped with backscattering technologies such as RFID. This work shows how a quantum tunneling RFID tag enables the use of RFIDs in new applications by minimizing battery waste and by drastically improving the range of backscattering systems. The highly sensitive 5.8 GHz quantum tunneling RFID tag achieves backscattering free space ranges above 1.2 km while consuming biasing powers as low as 20.4 μW. This is over 10 times higher than the maximum range of a semi-passive 5.8 GHz RFID ideal link. The quantum tunneling tag is characterized by return gains as high as 35 dB, a simple RF front-end, a sensitivity of -84 dBm, and increasing SNRs for increasing RF impinging powers. This work lays out the basis for both entrepreneurial and research activities that will lead to a new class of long-range backscattering passive sensors with power consumption far lower than traditional radios.
机译:传感器网络,配备无线电的无人机和卫星广泛用于医疗,智能城市和精准农业等许多应用中的传感器数据检索。然而,每距离单位的通信的高功率成本导致较差的技术解决方案,特别是在灵活性和效率方面。通过物联网(IoT)网络连接的设备的未来将需要数十亿个传感器,如果不配备RFID等反向散射技术,这将影响成本并增加能源需求。这项工作展示了量子隧道RFID标签如何通过最大程度地减少电池浪费并显着改善反向散射系统的范围,来在新的应用中使用RFID。高度敏感的5.8 GHz量子隧道RFID标签实现了1.2 km以上的反向散射自由空间范围,同时消耗的偏置功率低至20.4μW。这比半无源5.8 GHz RFID理想链路的最大范围高出10倍以上。量子隧道标签的特点是返回增益高达35 dB,简单的RF前端,-84 dBm的灵敏度以及为增加RF冲击功率而增加的SNR。这项工作为企业和研究活动奠定了基础,这些活动将导致新型远距离反向散射无源传感器,其功耗远低于传统无线电。

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