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Effective Design of Microstrip-Line Chipless RFID Tags Based on Filter Theory

机译:基于滤波器理论的微带线无芯片RFID标签有效设计

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摘要

This paper presents an effective design method of chipless RFID tags. With n-bit first-and second-order chipless tags' equivalent circuits proposed based on filter theory, the relationship between bits and frequency bands of tags is characterized by formulas. Combining with microstrip-line theory, the first-order chipless tag with single quarter-wave open-circuited (O.C.) shunt stub units, and second-order chipless tag with parallel pairs of quarter-wave O.C. shunt stubs are designed, respectively. The pros and cons for each type of the chipless tag are discussed. Two types of 5-bit chipless tag examples are given with good consistent simulated and measured results. In addition, for the second-order chipless tag, we propose a miniaturization scheme, enhancing the antidamage ability simultaneously. Damage test shows that the second-order chipless tag has the good antidamage ability, especially for the miniaturized tag. Finally, the bit extension by the formulaic method is discussed, emphasizing a promising practicability.
机译:本文提出了一种有效的无芯片RFID标签设计方法。在基于滤波器理论的n位一阶和二阶无芯片标签等效电路的基础上,利用公式对标签的位与频带之间的关系进行了表征。结合微带线理论,具有单四分之一波开路(O.C.)分流短截线单元的一阶无芯片标签和具有平行四分之一波O.C对的二阶无芯片标签。分别设计分流存根。讨论了每种类型的无芯片标签的利弊。给出了两种类型的5位无芯片标签示例,它们具有良好一致的模拟和测量结果。另外,对于二阶无芯片标签,我们提出了一种小型化方案,同时增强了抗损伤能力。损伤测试表明,二阶无芯片标签具有良好的抗损伤能力,特别是对于小型标签。最后,讨论了通过公式方法进行位扩展,强调了一种有希望的实用性。

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