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Design of planar resonators on flexible substrate for chipless tags intended for crack sensing

机译:用于裂纹检测的无芯片标签的柔性基板上的平面谐振器设计

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At the moment, the most popular information encoding technique is based on the generation of a particular signature in the spectrum of the backscattered signal. Chipless tags which rely on spectral signature encode data by using resonant structures working as band rejection filters, designed to resonate at defined frequencies. In this paper, a parametric study of different layouts of spiral resonator coupled to a transmission line and band rejection filters on flexible substrate, namely a 100 um thick PET substrate, operating in the 2-4 GHz band is firstly performed with the aim of designing a chipless tag working either as identifier or sensor. The design has been carried out by means of an electromagnetic CAD, and the performance of the proposed structures has been evaluated by the analysis of the respective S-parameters. Then, a proof of concept of a novel passive, wireless and chipless crack sensor has been introduced as practical example.
机译:目前,最流行的信息编码技术是基于反向散射信号频谱中特定签名的生成。依靠频谱签名的无芯片标签通过使用用作带阻滤波器的谐振结构对数据进行编码,该结构被设计为在定义的频率下谐振。在本文中,首先进行了设计用于设计在2-4 GHz频带上工作的螺旋谐振器的不同布局的参数研究,该螺旋谐振器耦合到传输线和带阻滤波器在柔性基板(即100 um厚的PET基板)上,带宽为100 um用作标识符或传感器的无芯片标签。通过电磁CAD进行设计,并通过分析各个S参数评估了所提出结构的性能。然后,作为实际示例介绍了新型无源,无线和无芯片裂纹传感器的概念验证。

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