首页> 外文会议>2015 IEEE International Symposium on Antennas and Propagation amp; USNC/URSI National Radio Science Meeting >A novel co/cross-polarizing chipless RFID tags for high coding capacity and robust detection
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A novel co/cross-polarizing chipless RFID tags for high coding capacity and robust detection

机译:新型共/交叉极化无芯片RFID标签,具有高编码能力和强大的检测能力

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摘要

The aim of this work is to introduce a novel tag design enhancing the coding efficiency for the Frequency Coded (FC) chipless RFID system. The proposed approach relies on exploiting the backscattered co/cross-polarized signals from a tag excited with a linear-polarized wave. Consequently, the tag signature is encoded into Notch/Peak (N/P) format in two orthogonal planes. Furthermore, the introduced tag design exhibits narrow resonance bandwidth ensuring best utilization of the operating frequency range and sufficient coding capacity with compact tag size. Hence, 80-bit coding capacity is reached employing physical amplitude On Off-N/P (OO-N/P) modulation and N/P-Position (N/P-P) modulation principles. The presence or absence of a resonator resembles the OO-N/P modulation while the shift in the frequency position imitates the (N/P-P) modulation. In addition, the depolarization property increases the probability of tag detection in a real-world heavily dense multi-path environment. An asymmetry crossed dipole structure is employed to facilitate coding in both divergent polarities separately. The manufactured tags are verified in indoor real-world environment to proof the robustness of the introduced tag design and encoding algorithm. In the full paper, various parameters such as reading range, tag miniaturization and angular stability will be investigated.
机译:这项工作的目的是介绍一种新颖的标签设计,以提高频率编码(FC)无芯片RFID系统的编码效率。所提出的方法依赖于利用线性极化波激发的标签的反向散射共/交叉极化信号。因此,标签签名在两个正交平面中被编码为Notch / Peak(N / P)格式。此外,引入的标签设计展现出狭窄的谐振带宽,从而确保了工作频率范围的最佳利用以及标签尺寸紧凑的充足编码能力。因此,采用物理振幅在非N / P(OO-N / P)调制和N / P位置(N / P-P)调制原理下达到80位编码能力。谐振器的存在与否类似于OO-N / P调制,而频率位置的偏移模仿了(N / P-P)调制。另外,去极化特性增加了在现实世界中高度密集的多路径环境中标签检测的可能性。采用不对称的交叉偶极子结构来促进分别在两个发散极性中的编码。制造的标签在室内实际环境中进行了验证,以证明引入的标签设计和编码算法的鲁棒性。在全文中,将研究各种参数,例如读取范围,标签小型化和角度稳定性。

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