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A metamaterial-enabled design enhancing decades-old short backfire antenna technology for space applications

机译:支持超材料的设计增强了数十年的太空应用短时回射天线技术

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摘要

Nearly two decades of intense study have passed since the term metamaterials was first introduced in 1999. In spite of their great promise, however, metamaterials have been slow to find their way into practical devices, and examples of real-world applications remain rare. In this paper, an Advanced Short Backfire Antenna (A-SBFA), augmented with anisotropic metamaterial surfaces (metasurfaces), has been designed to achieve a very high aperture efficiency across two frequency bands. This performance is unprecedented for an antenna that has seen widespread use, but few design changes over its more than 50 year existence. The reduced weight, compact design, hexagonal aperture, high dual-band efficiency, high cross-polarization isolation, as well as low multipaction and passive intermodulation (PIM) risk make the A-SBFA ideal for spaceborne applications. This transformative design demonstrates how practical metamaterials, when applied to conventional antenna technology, can provide significant performance enhancements.
机译:自从1999年首次引入超材料一词以来,已经进行了近二十年的深入研究。尽管超材料前景广阔,但它们一直难以进入实际设备,并且在现实世界中的应用实例仍然很少。在本文中,已设计了增强的各向异性超材料表面(超颖表面)的高级短回火天线(A-SBFA),以在两个频带上实现很高的孔径效率。对于已被广泛使用的天线而言,这种性能是前所未有的,但是在其存在超过50年的时间里,几乎没有任何设计更改。减轻的重量,紧凑的设计,六边形孔径,高双频效率,高交叉极化隔离以及低多重作用和无源互调(PIM)风险使A-SBFA成为航天应用的理想选择。这种变革性设计演示了实用超材料在应用于常规天线技术时如何能够显着提高性能。

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