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A Co-Polarization Broadband Radar Absorber for RCS Reduction

机译:用于减少RCS的共极化宽带雷达吸收器

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摘要

In this article, a single layer co-polarization broadband radar absorber is presented. Under normal incidence, it achieves at least 90% of absorption from 5.6 GHz to 9.1 GHz for both Transverse Electric (TE) and Transverse Magnetic (TM) polarizations. Our contribution and the challenge of this work is to achieve broadband absorption using a very thin single layer dielectric and it is achieved by rotating the resonating element by 45°. An original optimized Underlined U shape has been developed for the resonating element which provides a broadband co-polarization absorption. The structure is 12.7 times thinner than the wavelength at the center frequency. To understand the absorption mechanism, the transmission line model of an absorber and the three near unity absorption peaks at 5.87 GHz, 7.16 GHz and 8.82 GHz have been used to study the electric and magnetic fields. The physical insight of how the three near unity absorption peaks are achieved has also been discussed. After fabricating the structure, the measurements were found to be in good agreement with the simulation results. Furthermore, with the proposed original UUSR resonating element, the operational bandwidth to thickness ratio of 6.43 is obtained making the proposed UUSR very competitive.
机译:在本文中,提出了一种单层共极化宽带雷达吸收器。在法向入射下,它在5.6 GHz至9.1 GHz的横向电(TE)和横向磁(TM)极化中至少吸收90%的光。我们所做的贡献和挑战是使用非常薄的单层电介质来实现宽带吸收,这是通过将谐振元件旋转45°来实现的。已为共振元件开发了原始的优化的加下划线的U形,可提供宽带共极化吸收。该结构比中心频率处的波长薄12.7倍。为了了解吸收机理,已使用吸收体的传输线模型和5.87 GHz,7.16 GHz和8.82 GHz处的三个近似单位吸收峰来研究电场和磁场。还讨论了如何实现三个接近单位吸收峰的物理见解。在制造结构之后,发现测量结果与仿真结果非常吻合。此外,利用提出的原始UUSR谐振元件,获得了6.43的工作带宽与厚度之比,从而使得提出的UUSR非常有竞争力。

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