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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Harmonic Power Harvesting System for Passive RFID Sensor Tags
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Harmonic Power Harvesting System for Passive RFID Sensor Tags

机译:用于无源RFID传感器标签的谐波功率收集系统

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This paper introduces a relevant concept of energy harvesting for passive UHF radio frequency identification (RFID) relying on the exploitation of the power carried by the third harmonic signal generated by the RFID chip. The idea consists on the use of the sole third harmonic energy to power up an associated sensor to the RFID tag. The proposed concept is first demonstrated in simulation thanks to an equivalent model for the RF front-end of a passive UHF RFID chip. Although the proposed model is simplified, it considers the generated nonlinear signals, allowing an efficient design of the rectifier circuit, which is responsible of harvesting the third harmonic power besides ensuring the activation of the RFID chip in order to communicate with the reader. The power driving between the RFID chip, third harmonic harvester, and antenna at the fundamental and third harmonic frequencies is achieved by designing a low-loss distributed three-port impedance matching network. Simulation results confirm the operation of the matching network and the exploitation of the third harmonic signal by analyzing the power at different nodes in the circuit. Measurement results validate the proposed nonlinear chip model. A prototype of the RFID tag harmonic-harvester produces 39 of dc power harvested from the harmonic signal, showing good agreement with the simulation results. Finally, a sensor application exploiting the harmonic harvested power to energize a commercial temperature sensor at a distance of 80 cm from the reader is demonstrated.
机译:本文介绍了有关无源UHF射频识别(RFID)的能量收集的相关概念,该概念依赖于RFID芯片产生的三次谐波信号所携带的功率的利用。该想法包括使用唯一的三次谐波能量为关联的传感器加电至RFID标签。由于无源UHF RFID芯片的RF前端具有等效模型,因此首次在仿真中演示了所提出的概念。尽管所提出的模型得到了简化,但它考虑了生成的非线性信号,从而实现了整流器电路的高效设计,该整流器电路除了确保激活RFID芯片以与阅读器进行通信外,还负责收集三次谐波功率。通过设计一个低损耗的分布式三端口阻抗匹配网络,可以实现在RFID芯片,三次谐波收集器和天线之间以基频和三次谐波频率驱动功率。仿真结果通过分析电路中不同节点的功率,确认了匹配网络的运行以及三次谐波信号的利用。测量结果验证了所提出的非线性芯片模型。 RFID标签谐波采集器的原型可从谐波信号中获取39直流电,与仿真结果吻合良好。最后,展示了一种传感器应用,该应用利用了谐波收集的功率为距阅读器80厘米处的商用温度传感器供电。

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