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Dual-band modified complementary split ring resonator (MCSRR) based multi-resonator circuit for chipless RFID tag

机译:基于双频段改进互补式裂环谐振器(MCSRR)的无芯片RFID标签多谐振器电路

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As chipless RFID technology has potential to offer ultra-low cost and fully printable tags, recently, there has been considerable interest on implementing a compact chipless RFID tag with adequate data capacity. In this paper, a compact multiresonator circuit for spectral signature based chipless RFID tag is proposed. The multiresonator circuit utilizes a number of modified complementary split ring resonators (MCSRR) placed along the transmission line as data bit encoding element. A novel resonance detuning mechanism proposed here allows the use of an MCSRR to independently encode two data bits instead of one bit. Besides, symmetricity of the MCSRR with respect to the feed line causes the disappearance of the second harmonic and hence the total realizable bandwidth for data bit encoding is also enhanced. The multiresonator circuit is based on coplanar waveguide (CPW) configuration and can be realized on flexible substrate with single sided metallization. Once incorporated with cross polarized UWB tag antennas, the proposed multiresonator circuit can be used for a compact fully printable chipless RFID tag that may replace barcode in the long run.
机译:由于无芯片RFID技术具有提供超低成本和完全可打印标签的潜力,最近,人们对实现具有足够数据容量的紧凑型无芯片RFID标签抱有浓厚的兴趣。本文提出了一种紧凑的多谐振器电路,用于基于频谱签名的无芯片RFID标签。多谐振器电路利用沿传输线放置的多个改进的互补开口环谐振器(MCSRR)作为数据位编码元素。这里提出的一种新颖的谐振失谐机制允许使用MCSRR对两个数据位而不是一个位进行独立编码。此外,MCSRR相对于馈线的对称性导致二次谐波的消失,因此,用于数据比特编码的总可实现带宽也得到增强。多谐振器电路基于共面波导(CPW)配置,可以在具有单面金属化的柔性基板上实现。一旦与交叉极化UWB标签天线结合使用,建议的多谐振器电路就可以用于紧凑的完全可打印的无芯片RFID标签,从长远来看可以替代条形码。

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