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具有宽带抗反射层的高增益、广角启用QCTO的改进型鲁内堡透镜天线。

High gain, wide-angle QCTO-enabled modified Luneburg lens antenna with broadband anti-reflective layer.

作者信息

Biswas Soumitra, Mirotznik Mark

机构信息

Electrical and Computer Engineering Department, University of Delaware, Newark, DE, 19716, USA.

Advanced Antenna Technology Group, Envistacom, Peachtree Corners, GA, 30092, USA.

出版信息

Sci Rep. 2020 Jul 28;10(1):12646. doi: 10.1038/s41598-020-69631-6.

Abstract

The gradient-index (GRIN) Luneburg lens antenna offers significant benefits, e.g. high aperture efficiency, low-power, minimal cost, wide beam scanning angle and broad bandwidth, over phased array antennas and reflector antennas. However, the spherical shape of the Luneburg lens geometry complicates the integration of standard planar feed sources and poses significant implementation challenge. To eliminate the feed mismatch problem, the quasi-conformal transformation optics (QCTO) method can be adopted to modify the lens' spherical feed surface into a planar one. However, Luneburg lenses designed with QCTO method are limited to poor performance due to the presence of the reflections and beam broadening arising from the quasi-conformal mapping. In this paper, we present a new method of implementing QCTO-enabled modified Luneburg lens antenna by designing a broadband anti-reflective layer along with the modified lens's planar excitation surface. The proposed anti-reflector layer is inherently broadband in nature, has a continuously tapered inhomogeneous dielectric permittivity profile along its thickness, and ensures broadband impedance matching. To show the new QCTO modified Luneburg lens antenna, an example lens antenna was designed at Ka-band (26-40 GHz) and fabricated using fused deposition modeling (FDM) based additive manufacturing technique. Electromagnetic performance of the lens antenna was experimentally demonstrated.

摘要

渐变折射率(GRIN)鲁内伯格透镜天线相比相控阵天线和反射面天线具有显著优势,例如高孔径效率、低功耗、低成本、宽波束扫描角度和宽带宽。然而,鲁内伯格透镜的球形几何形状使得标准平面馈源的集成变得复杂,并带来了重大的实施挑战。为了消除馈源失配问题,可以采用准共形变换光学(QCTO)方法将透镜的球形馈源表面修改为平面。然而,由于准共形映射产生的反射和波束展宽,采用QCTO方法设计的鲁内伯格透镜性能有限。在本文中,我们提出了一种实现基于QCTO的改进型鲁内伯格透镜天线的新方法,即设计一个宽带抗反射层以及改进透镜的平面激励表面。所提出的抗反射层本质上是宽带的,沿其厚度具有连续渐变的非均匀介电常数分布,并确保宽带阻抗匹配。为了展示新型QCTO改进型鲁内伯格透镜天线,设计了一个Ka波段(26 - 40 GHz)的示例透镜天线,并使用基于熔融沉积建模(FDM)的增材制造技术进行制造。通过实验验证了该透镜天线的电磁性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8af6/7387564/ff6e424fe890/41598_2020_69631_Fig1_HTML.jpg

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