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Passive Split Ring Resonator Tag Configuration for RFID-Based Wireless Permittivity Sensing

机译:基于RFID的无线允许感测的被动分流环谐振器标签配置

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摘要

Wireless electromagnetic detection of non-visible processes is a vital challenge when visual signals are difficult to decipher or blocked, such is the case in pipelines, chemical reactions, or the human body. To guide the design of future microwave resonator sensors, investigative experiments into resonator sensitivity, sensing distance, and RFID array alignment were performed. A horn antenna reader was coupled to a singular flexible ring resonator as well as a flexible ring resonator array with a measured S-11 notch frequency of 2.6 - 2.9 GHz. The experimental results closely compared to simulation and the computer model illustrated the detection of an introduced material around the high E-field regions of the coupled ring tag. In the fabricated circuit, liquids in a microfluidic channel are detected by a notch frequency and amplitude variation of 300 MHz and -30 dB, respectively, which can be matched with simulations to determine the materials' permittivity. Other application-based requirements are also investigated such as the sensing range of the antenna-tag structure (measured up to 20 cm), the small size of the sensing tag (9 square cm) and the ability to detect through material barriers.
机译:当视觉信号难以破译或阻塞时,无可见过程的无需电磁检测是一个重要的挑战,这是管道,化学反应或人体的情况。为了指导未来的微波谐振器传感器的设计,进行调查实验进入谐振器灵敏度,感测距离和RFID阵列对准。喇叭天线读取器耦合到奇异的柔性环谐振器以及柔性环形谐振器阵列,其测量的S-11 Notch频率为2.6-2.9GHz。与模拟密切相关的实验结果和计算机模型示出了围绕耦合环标签的高电子场区域的引入材料的检测。在制造的电路中,通过分别通过300MHz和-30dB的凹口频率和幅度变化来检测微流体通道中的液体,其可以与模拟相匹配以确定材料的介电常数。还研究了其他基于应用的要求,例如天线标签结构的感测范围(测量到20cm),感测标签(9平方厘米)的小尺寸和通过材料屏障检测的能力。

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