Laboratoire Energétique Mécanique Electromagnétisme, Université Paris Nanterre, Ville d'Avray, 92410, France.
Constructions Mécanique de Normandie, Systems department, Cherbourg, 50105, France.
Sci Rep. 2018 Jan 10;8(1):382. doi: 10.1038/s41598-017-18859-w.
A thin broadband dual-layer radar absorber based on periodic Frequency Selective Surfaces (FSS) to tackle Electromagnetic Interference (EMI) in radomes is presented in this article. The proposed structure consists of periodically arranged metallic patterns printed on two dielectric substrates separated by an optimized air gap. Under normal incidence, the proposed structure exhibits at least 89.7% of absorption in the whole band of 4.8 GHz to 11.1 GHz for both Transverse Electric (TE) and Magnetic (TM) polarizations. For oblique incidences, a very slight decrease in the bandwidth is observed in the upper frequency band until 30° and the absorption remains very interesting for higher incidences. The structure is λ/7.2 (λ is the wavelength in free space) thin compared to the center frequency (8.2 GHz). In addition, parametric studies have demonstrated that at least 90% of absorption can be produced with our structure by adjusting the thicknesses of the dielectric substrates. Another issue that is presented and discussed in this paper is a new approach for evaluating the performance of absorbers. In fact, studies show that the absorber can compete with other recent broadband absorbers. After fabricating the structure, the measurements were found to be in good agreement with the simulation results.
本文提出了一种基于周期性频率选择表面(FSS)的薄宽带双层雷达吸波器,用于解决天线罩中的电磁干扰(EMI)问题。该结构由周期性排列的金属图案组成,印刷在两个介电基板上,介电基板之间有一个优化的气隙。在正入射下,对于 TE 和 TM 两种极化,该结构在 4.8GHz 至 11.1GHz 的整个频带内的吸收率至少为 89.7%。对于斜入射,在上频带中,在 30°之前,带宽略有下降,而在更高的入射角下,吸收率仍然非常高。与中心频率(8.2GHz)相比,该结构厚度为 λ/7.2(λ 是自由空间中的波长)。此外,参数研究表明,通过调整介电基板的厚度,我们的结构至少可以产生 90%的吸收率。本文还提出并讨论了一种评估吸波器性能的新方法。事实上,研究表明,该吸波器可以与其他最近的宽带吸波器相媲美。在制造出该结构后,测量结果与模拟结果吻合良好。