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Cooperative Integration of Harvesting RF Sections for Passive RFID Communication

机译:被动射频通信的收获射频部分的协作集成

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摘要

This paper proposes a novel cooperative composite energy harvesting system that consists in the association of a traditional passive UHF Radio Frequency Identification (RFID) chip with an Electromagnetic Energy Harvesting Circuit (EEH-C). The objective is to exploit the i-v nonlinearity of the rectifier by applying a signal with time-varying envelope in order to improve the RF-to-dc conversion efficiency. Thanks to a multisource configuration, i.e., an RFID reader at 0.868 GHz and an external source at 2.45 GHz, the EEH-C is able to rectify the harmonic product of the RFID chip, in addition to the 2.45 GHz signal, without compromising the RFID communication. Additionally, digitally modulated signals are used at 2.45 GHz to further enhance the harvesting efficiency of the EEH-C. From theory, simulations and measurement it is demonstrated that the exploitation of the three nonlinear effects of rectifying circuits, i.e., (i) impedance power dependency, (ii) harmonic signals production, and (iii) waveform dependency can greatly improve the conversion efficiency of the EEH-C.
机译:本文提出了一种新型的协作式复合能量收集系统,该系统包括将传统的无源UHF射频识别(RFID)芯片与电磁能量收集电路(EEH-C)结合在一起。目的是通过施加具有时变包络的信号来利用整流器的i-v非线性,以提高RF-dc转换效率。得益于多源配置,即0.868 GHz的RFID阅读器和2.45 GHz的外部信号源,EEH-C不仅可以校正2.45 GHz信号,还可以校正RFID芯片的谐波产物,而不会影响RFID。通讯。此外,数字调制信号用于2.45 GHz,以进一步提高EEH-C的采集效率。从理论,仿真和测量结果表明,利用整流电路的三个非线性效应,即(i)阻抗功率相关性,(ii)谐波信号产生和(iii)波形相关性,可以极大地提高整流器的转换效率。 EEH-C。

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