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Circularly Polarized Electrically Small Antenna Using Chiral Metamaterials and Based on Characteristic Modes Theory

机译:基于特征模式理论的手性超材料圆极化电小天线

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This paper presents a novel circularly polarized electrically small antenna that has been designed thanks to the Characteristic Mode Analysis (CMA). It is based on the energy compensation between two elements: a non-resonant dipole antenna and a chiral Metamaterial (MTM) in order to achieve a Circular Polarization (CP). First, the two elements are analyzed separately using CMA in order to analyze the physical behavior of both structures. Then, the inter modal coupling between the dipole and the MTM helix is studied between the different modes to propose a better understanding of the net stored energy compensation. The coupling between the two structures is through the magnetic and electric modes and it thus increases the overall efficiency. Circular polarization of the antenna is obtained through the chirality properties of the helix. The proposed antenna resonates at 2.35 GHz and has electrical sizes of $lambda /15, lambda /15$, and $lambda /39$. The radiation pattern of the antenna is omnidirectional with a fair axial ratio for a circularly polarised antenna.
机译:本文介绍了一种新颖的圆极化电小型​​天线,该天线已通过特征模式分析(CMA)设计。它基于两个元素之间的能量补偿:非谐振偶极天线和手性超材料(MTM),以实现圆极化(CP)。首先,使用CMA分别分析这两个元素,以分析这两个结构的物理行为。然后,研究了偶极子和MTM螺旋之间的模态耦合,以更好地理解净储能补偿。两种结构之间的耦合是通过磁模式和电模式进行的,因此可以提高整体效率。天线的圆极化是通过螺旋的手性获得的。所提出的天线在2.35 GHz处发生谐振,其电气尺寸为λ/ 15,λ/ 15和λ39。对于圆极化天线,天线的辐射方向图是全向的,具有合理的轴向比率。

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