首页> 外文会议>2014 IEEE RFID Technologies and Applications Conference >Improving LF reader antenna volume of detection for RFID token tag thanks to Identical Coaxial Loops (ICLs) and in/out-of phase multiple-loops structures
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Improving LF reader antenna volume of detection for RFID token tag thanks to Identical Coaxial Loops (ICLs) and in/out-of phase multiple-loops structures

机译:借助相同的同轴环路(ICL)和同相/异相多环结构,提高了RFID令牌标签的LF阅读器天线的检测量

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This work concerns the prototyping of a low cost PCB based multiple loops antenna for LF 125 kHz RFID application. The multiple loops structure is considered for the context of small tags traceability, for example token tags such as circular HitagS (1–2 cm of diameter). The targeted volume is 20×20×10 cm for the moment. The position of the tag can be parallel or orthogonal to the reader antenna plane, with a variation of the angle position, and is moving inside the volume of detection (small objects in a storage basket in practice). The dedicated conception of a reader antenna is necessary because the application targets a volume of detection rather than maximum range detection. Additionally, the position of the tag is not known. The design considerations are based on a combination of Identical Coaxial Loops (ICL) and in/out-of phase loops structures whose advantages are discussed in terms of mutual inductance in the simulation part. An optimum diameter of 7,5 cm is noticed for square loops case. The realization of this structure shows qualitatively good results for our objectives and emphasizes a tradeoff between the two effects of coupling due to the two structures combined. As the tag is moving inside the volume, with an orientation (tag position test) unknown, our observations drive to the conclusion that the detection will be effective. Some perspectives are also clearly identified to improve the structure in the future.
机译:这项工作涉及用于LF 125 kHz RFID应用的低成本基于PCB的多环天线的原型。考虑到小标签可追溯性的背景下考虑了多环结构,例如令牌标签,例如圆形HitagS(直径1-2 cm)。目前目标体积为20×20×10 cm。标签的位置可以与读取器天线平面平行或正交,且角度位置有所变化,并且标签在检测体积内移动(实际上是存储篮中的小物体)。阅读器天线的专用概念是必要的,因为该应用程序的目标是检测量而不是最大范围检测。另外,标签的位置未知。设计考虑是基于同心同轴环路(ICL)和同相/异相环路结构的组合,其优点在仿真部分的互感方面进行了讨论。对于方环,最佳直径为7.5厘米。这种结构的实现在质量上达到了我们目标的结果,并且由于两个结构的组合,强调了耦合的两个效果之间的权衡。当标签在体积内移动时,方向(标签位置测试)未知,我们的观察得出这样的结论,即检测将是有效的。还明确指出了一些观点,以改善未来的结构。

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