Chipless Radio Frequency Identification (RFID) Device

S. Mukherjee
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引用次数: 8

Abstract

A novel technique for radio frequency identification devices (RFID) based on remote measurement of complex impedance at microwave frequencies is presented. The low cost read-only tags do not need semiconductor elements and can be implemented by printing a conducting pattern on a low cost dielectric substrate. Multiple tags are simultaneously illuminated by a chirped microwave signal with a bandwidth of few hundred MHz to few GHz. The composite backscatter from all tags is mixed with the transmitted chirp signal and filtered to generate an intermediate frequency (IF). The IF is further processed with a narrow detection bandwidth to select a particular tag. Next, the phase-frequency profile of the reflection coefficient (complex impedance) of the selected tag is recovered with the help of a reference channel. Phase-frequency signatures of individual tags determine the tag identity. The technique allows operation with low transmit power, provides range information and mitigates against multi-path propagation and interference.
无芯片射频识别(RFID)设备
提出了一种基于微波频率复杂阻抗远程测量的射频识别技术。低成本的只读标签不需要半导体元件,并且可以通过在低成本介电基板上印刷导电图案来实现。多个标签同时被带宽为几百兆赫到几GHz的啁啾微波信号照亮。来自所有标签的复合后向散射与发射的啁啾信号混合并滤波产生中频(IF)。对中频进行进一步处理,用较窄的检测带宽选择特定的标签。接下来,在参考通道的帮助下恢复所选标签的反射系数(复阻抗)的相频分布。单个标签的相位频率签名决定了标签的身份。该技术允许低发射功率操作,提供距离信息,减轻多路径传播和干扰。
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