用于超高频反射天线的一维修正光子晶体的制备

Bin Li, Shanguo-Huang, Kuei-Jen Lee, H. Chou, Wanyi-Gu
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引用次数: 1

摘要

随着圆极化天线在无线通信中的广泛应用,提高圆极化天线在波束方向轴向比方面的性能具有重要意义。良好的CP性能总是需要的。本文在前人仿真结果的基础上,制作了用于超短波反射面天线的一维修正光子晶体,以补偿在许多天线应用中遇到的圆偏振差。目标是扩大交叉偶极子辐射的波束宽度。通过测量3dB轴比来评估性能。采用多层理论中的传递矩阵理论求解各层间的场分布。虽然一些基于表平面的补偿方法可以大大改善基于交叉偶极子的反射面天线,但它只能补偿特定方向的CP,在其他方向上可能会产生畸变。一维方法可以平滑反射镜和噪声带来的分辨。利用一维光子晶体调节TE/TM极化的能量分布以实现更宽的波束宽度,并制作了反射天线并进行了测量以验证该方法的有效性。测量结果表明,补偿后的波束宽度比补偿前的波束宽度大得多。三维图的增益和辐射方向图也被显示,以验证是否补偿的副作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fabrication of the amendatory one-dimensional photonic crystals for SHF reflector antennas
As the applications of circular polarization (CP) antennas are widely used in the wireless communications, it is significant to improve the CP antenna performance in aspect of axial ratio at the boresite direction. A good CP performance is always desired. In this paper, we fabricate the amendatory one-dimensional photonic crystals for SHF reflector antenna based on previous simulation results to compensate the circular-polarization discrimination as encountered in many antenna's applications. The goal is to widen the beamwidth of radiation for crossed-dipole. The performance is evaluated by measuring the 3dB axial ratio. Transfer matrix theory of multi-layer theory is used to solve the field distribution cross layer. Although some tabulate plane-based (TPB) compensations can achieve a great improvement for the crossed-dipole based reflector antenna, but it can only compensate the CP in a specified direction and may distort in other directions. The one-dimensional approach can smooth the discrimination introduced by the reflector and noise. The energy distribution of TE/TM polarizations are regulated with a one dimensional photonic crystal to achieve a broader beamwidth, also the reflector antenna is fabricated and measured to validate the efficiency of the proposed approach. The measured results show that the beamwidth is much wider than that before compensation. The gain of 3D plot and the radiation patterns are also shown to verify if the side effect of compensation.
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