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Application Of Polarization And Angular Dependent Artificial Ground Planes In Compact Planar High-gain Antenna Design

机译:极化和角相关人工接地平面在紧凑平面高增益天线设计中的应用

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摘要

An artificial surface demonstrating angular and polarization dependency to the polarization of the applied field is introduced. This artificial surface consists of a periodic strip grating on a grounded dielectric slab. A method based on Floquet's modal expansion is presented to solve the scattering problem of such surfaces. A code based on method of moments (MoM) is also developed to analyze and design these artificial surfaces. The obtained results using these methods are compared against each other. The extracted reflection parameters are then employed to characterize the surface impedance of the artificial surface for different incident angles and both TE and TM polarizations. This artificial surface is used as the ground plane of cavity resonance antennas. Next, a highly reflective frequency selective surface (FSS) is designed to show high reflectivity at two different frequencies. This FSS is to be used as the superstrate layer of the cavity resonance antenna. The impedance surface of the artificial ground plane and the equivalent admittance of the designed FSS are employed in the transverse equivalent network (TEN) model to obtain radiation properties of such antennas. Finally, compact high-gain dual-band dual-orthogonally polarized antennas are designed based on the aforementioned analyses.
机译:介绍了人造表面,该人造表面展示了角度和偏振对所施加场的偏振的依赖性。该人造表面由接地电介质板上的周期性带状光栅组成。提出了一种基于Floquet模态展开的方法来解决此类表面的散射问题。还开发了基于矩量法(MoM)的代码来分析和设计这些人造曲面。将使用这些方法获得的结果进行比较。然后,将提取的反射参数用于表征不同入射角以及TE和TM偏振的人造表面的表面阻抗。该人造表面用作腔谐振天线的接地平面。接下来,设计高反射频率选择表面(FSS),以在两个不同的频率下显示高反射率。该FSS将用作腔谐振天线的上覆层。在横向等效网络(TEN)模型中采用了人工接地平面的阻抗表面和设计的FSS的等效导纳来获得此类天线的辐射特性。最后,基于上述分析,设计出紧凑的高增益双频双正交极化天线。

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