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Design of Circularly Polarized Conical RFID Reader Antenna Based on Natural Boundary Conditions

机译:基于自然边界条件的圆极化锥形RFID阅读器天线设计

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摘要

A novel design approach to circularly polarized (CP) conical RFID reader antenna is presented in this paper. First, operational principle of the proposed antenna is revealed by exploring the distribution of natural boundary conditions. It is demonstrated that due to the introduction of a shorting pin, the proposed antenna is dominated by two resonate modes, i.e., the monopole mode and loop mode, as the symmetrical property of conventional planar conical antenna is disturbed. As a result, the respective natural boundary conditions from these two modes will be sequentially excited with an interval of one-quarter of temporal period, thus the surface current becomes rotated and a CP wave is radiated. Prototypes with CP bidirectional and unidirectional radiation centered at 2.4 GHz are then fabricated and tested. It is shown that they can achieve a 3-dB axial ratio bandwidth about 5.38% and 2.84% in +nyndirection, respectively, which is further demonstrated that the design approach can be employed to effectively generate CP radiation without the use of orthogonal structures, modified ground plane as well as extra polarizer.
机译:本文提出了一种新颖的圆极化(CP)锥形RFID阅读器天线设计方法。首先,通过探索自然边界条件的分布来揭示拟议天线的工作原理。事实证明,由于引入了短路插脚,所提出的天线受到两个谐振模式的支配,即单极模式和环形模式,这是因为传统平面圆锥形天线的对称特性受到了干扰。结果,来自这两种模式的各自的自然边界条件将以四分之一的时间周期的间隔被顺序地激发,因此表面电流旋转并且辐射出CP波。然后制造并测试以2.4 GHz为中心的CP双向和单向辐射的原型。结果表明,在+ n <斜体xmlns:mml =“ http://www.w3.org/1998/Math/MathML” xmlns:xlink =中,它们可以实现3-dB轴向比率带宽,分别约为5.38%和2.84%。 “分别分别是:http://www.w3.org/1999/xlink“> y方向,这进一步证明了该设计方法可以有效地产生CP辐射,而无需使用正交结构,改进的地面平面以及额外的偏光镜。

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