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Long Range Battery-Less PV-Powered RFID Tag Sensors

机译:无电池的远距离光伏供电RFID标签传感器

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Communication range in passive radio-frequency identification (RFID) front-end devices is a critical barrier in the real-world implementation of this low-cost technology. Purely passive RFID tags power up by harvesting the limited RF energy transmitted by the interrogator, and communicate by backscattering the incident signal. This mode of communication keeps manufacturing costs below a few cents per tag, but the limited power available at the tag undermines long-range deployment. In this paper, we present an approach to use photovoltaics (PV) to augment the available energy at the tag to improve read range and sensing capabilities. We provide this extra-energy to the RFID integrated circuit (IC) using minimum additional electronics yet enabling persistent sensor-data acquisition. Current and emerging thin-film PV technologies have significant potential for being very low-cost, hence eliminating the barrier for implementation and making of PV-RFID wireless sensors. We reduce the long-range PV-RFID idea to practice by creating functional prototypes of: 1) a wireless building environment sensor to monitor temperature and 2) an embedded tracker to find lost golf balls. The read range of PV-RFID is enhanced eight times compared to conventional passive devices. In addition, the PV-RFID tags persistently transmit large volumes of sensor data (>0.14 million measurements per day) without using batteries. For communication range and energy persistence, we observe good agreement between calculated estimates and experimental results. We have also identified avenues for future research to develop low-cost PV-RFID devices for wireless sensing in the midst of the other competitive wireless technologies, such as Bluetooth, ZigBee, long range (LoRa) backscatter etc.
机译:无源射频识别(RFID)前端设备中的通信范围是该低成本技术在现实世界中实施的关键障碍。纯粹的无源RFID标签通过收集询问器传输的有限RF能量来加电,并通过反向散射入射信号进行通信。这种通信方式使每个标签的制造成本保持在几美分以下,但是标签上可用的有限功率破坏了远程部署。在本文中,我们提出了一种使用光伏(PV)来增加标签上可用能量的方法,以改善读取范围和感应能力。我们使用最少的附加电子设备为RFID集成电路(IC)提供这种额外的能量,同时实现持久的传感器数据采集。当前和新兴的薄膜PV技术具有极低成本的巨大潜力,因此消除了实施和制造PV-RFID无线传感器的障碍。通过创建以下功能原型,我们减少了长期使用PV-RFID的想法:1)用于监视温度的无线建筑环境传感器,以及2)嵌入式跟踪器,用于查找丢失的高尔夫球。与传统的无源设备相比,PV-RFID的读取范围提高了八倍。此外,PV-RFID标签无需使用电池即可持续传输大量传感器数据(每天> 14万次测量)。对于通讯距离和能量持久性,我们观察到计算的估计值与实验结果之间的一致性良好。我们还为未来的研究确定了途径,以便在其他竞争性无线技术(例如蓝牙,ZigBee,远程(LoRa)背向散射等)中开发用于无线传感的低成本PV-RFID设备。

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