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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >A $K_{u}$ -Band Dual Polarization Hybrid-Mode Horn Antenna Enabled by Printed-Circuit-Board Metasurfaces
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A $K_{u}$ -Band Dual Polarization Hybrid-Mode Horn Antenna Enabled by Printed-Circuit-Board Metasurfaces

机译:由印刷电路板超表面启用的 $ K_ {u} $ -波段双极化混合模式喇叭天线。

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摘要

Metamaterials with properly engineered surface properties have been recently proposed for application in the design of broadband hybrid-mode horn antennas, such as soft and hard horns. In this paper, we present the design, fabrication, and measured results of a square dual-polarization horn antenna with thin metasurfaces lining the four walls, demonstrating broadband, negligible-loss hybrid-mode operation. By employing a powerful genetic-algorithm (GA) design optimization technique, we have dispersion-engineered low-index metaliners whose surface impedances satisfy the balanced hybrid condition across the $K_{u}$ -band. The optimized metaliners were synthesized based on conventional printed-circuit board technology, leading to a lightweight and low-cost construction. To improve the cross-polarization response, a simple dielectric plug was placed in the throat of the horn to perform effective mode conversion. Measurements showed that the fabricated horn antenna prototype provided low sidelobes, low cross-polarization levels, and radiation patterns that are approximately independent of polarization. Excellent agreement was found between measured and simulated results across the entire band of operation. Both the far-field radiation patterns and the aperture field distributions confirm the hybrid-mode operation of the horn, validating the balanced metasurface design. This metamaterial-enabled antenna represents a low-cost alternative to other types of soft feed horns, such as corrugated horns.
机译:最近已经提出了具有适当设计的表面特性的超材料,以用于宽带混合模式喇叭天线的设计中,例如软喇叭和硬喇叭。在本文中,我们介绍了方形双极化喇叭天线的设计,制造和测量结果,该天线在四壁之间衬有薄的亚表面,证明了宽带,损耗可忽略不计的混合模式工作。通过采用强大的遗传算法(GA)设计优化技术,我们开发了分散工程化的低折射率金属化剂,其表面阻抗在整个<分子式> inline“> $ K_ {u} $ 带。经过优化的金属化剂是基于常规印刷电路板技术合成的,从而实现了轻便,低成本的构造。为了改善交叉极化响应,将简单的介电塞放在号筒的喉咙中以执行有效的模式转换。测量表明,所制造的号角天线原型提供了较低的旁瓣,较低的交叉极化水平以及近似独立于极化的辐射方向图。在整个操作范围内的测量结果和模拟结果之间发现了极好的一致性。远场辐射图和孔径场分布都确认了号角的混合模式操作,从而验证了平衡的超表面设计。这种支持超材料的天线代表了其他类型的软馈电喇叭(如波纹形喇叭)的低成本替代品。

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