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Design and fabrication of ultra-low cost radio frequency identification antennas and tags exploiting paper substrates and inkjet printing technology

机译:利用纸质基材和喷墨打印技术的超低成本射频识别天线和标签的设计与制造

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摘要

This work deals with the design and fabrication of antennas for radio frequency identification (RFID) tag devices operating in the low microwave frequency range. Paper substrate material and inkjet printing process have been used to guarantee mechanical flexibility and ultra-low production costs of the antenna. A new antenna design methodology has been developed with the purpose to minimise the amount of both substrate material and conductive ink. The first goal is achieved by reducing, for a given frequency, the antenna size. The second goal, instead, is pursued by studying the surface current density distribution along the antenna and removing the metal material where such a current density is negligible. The above methodology has been applied to several antennas designs ranging from a windshield sticker tag to an RFID-SAW antenna. Moreover a 3.5 GHz crossed-dipole tag, based on the frequency-doubling mechanism, is reported along with a possible modification to enable wireless sensing. The experimental characterisation of these prototypes validates the proposed design methodology opening, in the mean time, the possibility for ultra-low cost mass production of RFID tag devices based on paper materials.
机译:这项工作涉及在低微波频率范围内工作的用于射频识别(RFID)标签设备的天线的设计和制造。纸质基材材料和喷墨印刷工艺已用于保证天线的机械柔韧性和超低生产成本。已经开发出一种新的天线设计方法,其目的是最小化基底材料和导电油墨的量。第一个目标是通过减小给定频率的天线尺寸来实现的。相反,通过研究沿天线的表面电流密度分布并在这种电流密度可忽略的地方去除金属材料来追求第二个目标。以上方法已经应用于从挡风玻璃标签到RFID-SAW天线的几种天线设计。此外,还报告了基于倍频机制的3.5 GHz交叉偶极子标签以及可能的修改以实现无线传感。这些原型的实验特性验证了所提出的设计方法的可行性,与此同时,也为基于纸张材料的RFID标签设备超低成本批量生产提供了可能。

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