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Passive RFID tag with multiple resonators for object tracking

机译:带有多个谐振器的无源RFID标签,用于物体跟踪

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A comparative study of the realization of 4 bit passive chipless resonator for RFID tag section using 4 resonators and 8 resonators is discussed in this paper. The designed 4 bit passive chipless RFID resonator tag can detect up to 15 objects. Basic resonator is a complementary spiral with direct coupling to the microstrip line (MSL), operating in the L band region. A 4 bit resonator structure using 4 complementary spirals and 8 complementary spirals are designed. The resonance obtained depends upon the length, width and gap of the spiral structure. The 4 bit resonator structure using 8 complementary spirals is twice the duplication of the 4 bit resonator using 4 complementary spirals. The operating frequencies of both the structures are almost the same. The 4 bit resonator structure using 8 complementary spirals gives the amplified version of the signal provided by 4 complementary spirals thus adding range and security to the system. Both the 4 bit spiral resonator structures were simulated using ANSYS HYSS 14. The optimized resonators are fabricated on FR4 substrate and simulated results are validated using Keysight E5080A ENA Vector Network Analyser.
机译:本文讨论了使用4个谐振器和8个谐振器实现RFID标签部分4位无源无芯片谐振器的比较研究。设计的4位无源无芯片RFID谐振器标签最多可以检测15个物体。基本谐振器是一个互补螺旋,直接耦合到微带线(MSL),在L波段范围内工作。设计了一种使用4个互补螺旋和8个互补螺旋的4位谐振器结构。所获得的共振取决于螺旋结构的长度,宽度和间隙。使用8个互补螺旋的4位谐振器结构是使用4个互补螺旋的4位谐振器的两倍。两种结构的工作频率几乎相同。使用8个互补螺旋的4位谐振器结构给出了由4个互补螺旋提供的信号的放大版本,从而为系统增加了范围和安全性。两种4位螺旋谐振器结构均使用ANSYS HYSS 14进行了仿真。优化后的谐振器在FR4基板上制造,并使用Keysight E5080A ENA矢量网络分析仪验证了仿真结果。

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