Comparison of two flat reflector-type designs for dual-polarization, dual-band operation

S. Duffy, S. Targonski
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引用次数: 3

Abstract

The parabolic reflector remains an essential antenna for high-gain applications. This is a result of its desirable characteristics based on geometric optics. These include relative frequency independence for sufficiently large apertures and high aperture efficiency. However, the parabolic reflector occupies a large volume. This may be aesthetically unappealing on the sides of buildings and structures. Also, from a mobile user perspective, a desirable characteristic is having a large aperture during operation while having a small volume when packed away and not in use. The parabolic reflector is typically constructed of multiple petals for mobile uses, but it does not pack into as small a volume as a flat, thin antenna would due to the curvature of the paraboloid. Therefore, the primary goal of the antennas studied in this work is developing flat reflector antennas to utilize the advantages of large reflector apertures while remaining capable of packing into a small volume. In addition, system requirements dictated dual-band, dual-polarized operation. Two flat reflectors are compared: a reflectarray and a zoned reflector. While each design is inherently narrow-band, methods of achieving dual-band operation were employed.
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双偏振、双波段工作两种平面反射型设计的比较
抛物面反射器仍然是高增益应用中必不可少的天线。这是其基于几何光学的理想特性的结果。这包括相对频率无关的足够大的孔径和高孔径效率。然而,抛物面反射面占据了很大的体积。在建筑和结构的侧面,这可能在美学上没有吸引力。此外,从移动用户的角度来看,理想的特性是在操作时具有大孔径,而在打包和不使用时具有小体积。抛物面反射器通常由多个花瓣构成,用于移动用途,但由于抛物面的曲率,它不能像扁平的薄天线那样压缩成小体积。因此,本研究天线的主要目标是开发平面反射面天线,以利用大反射面孔径的优势,同时保持能够封装成小体积。此外,系统要求要求双频、双极化操作。比较了两种平面反射器:反射式反射器和分区反射器。虽然每个设计本身都是窄带的,但采用了实现双带操作的方法。
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