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Polarisation independent resistively loaded frequency selective surface absorber with optimum oblique incidence performance

机译:具有最佳斜入射性能的极化独立的阻性负载频率选择表面吸收器

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摘要

This study presents the design of a thin electromagnetic absorber which exhibits radar backscatter suppression that is independent of the wave polarisation at large incidence angles. The structure consists of a metal backed printed frequency selective surface (FSS), with resistors placed across narrow gaps inserted in the middle of each of the four sides of the conductor loops. The geometry of the periodic array and the value of the vertical and horizontal resistor pairs are carefully chosen to present a real impedance of 377 Ω at the centre operating frequency for both TE and TM polarised waves. Angular sensitivity and reflectivity bandwidth have been investigated for FSS absorber designs with thicknesses of 1, 2 and 3 mm. Each of the three structures was optimised to work at a centre frequency of 10 GHz and an incident angle of 45°. The design methodology is verified by measuring the radar backscatter suppression from a 3 mm (l / 10) thick screen in the frequency range 8–12 GHz. The absorber construction was simplified by filling the four metal gaps in each unit cell with shielding paint, and selecting the ink thickness to give the two required surface resistance values.
机译:这项研究提出了一种薄电磁波吸收器的设计,该电磁波吸收器具有雷达反向散射抑制功能,与大入射角的波偏振无关。该结构由金属背衬的印刷频率选择表面(FSS)组成,电阻器跨过狭窄的间隙放置,该间隙插入导体回路四个侧面的中间。仔细选择周期阵列的几何形状以及垂直和水平电阻对的值,以使TE和TM极化波在中心工作频率下的实际阻抗为377Ω。已对厚度为1、2和3毫米的FSS吸收器设计进行了角灵敏度和反射率带宽的研究。这三个结构中的每一个都经过优化,可以在10 GHz的中心频率和45°的入射角下工作。通过在8-12 GHz频率范围内从3毫米(l / 10)厚的屏幕上测量雷达的反向散射抑制,可以验证设计方法的有效性。通过用屏蔽涂料填充每个单元电池中的四个金属间隙,并选择墨水厚度以给出两个所需的表面电阻值,可以简化吸收器的结构。

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