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Fractal Metamaterial Absorber with Three-Order Oblique Cross Dipole Slot Structure and its Application for In-band RCS Reduction of Array Antennas

机译:具有三阶斜交叉偶极缝隙结构的分形超材料吸收体及其在阵列天线带内RCS减小中的应用

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摘要

To miniaturize the perfect metamaterial absorber, a fractal three-order oblique cross dipole slot structure is proposed and investigated in this paper. The fractal perfect metamaterial absorber (FPMA) consists of two metallic layers separated by a lossy dielectric substrate. The top layer etched a three-order oblique fractal-shaped cross dipole slot set in a square patch and the bottom one is a solid metal. The parametric study is performed for providing practical design guidelines. A prototype with a thickness of 0.0106λ (λ is the wavelength at 3.18 GHz) of the FPMA was designed, fabricated, measured, and is loaded on a 1×10 guidewave slot array antennas to reduce the in-band radar cross section (RCS) based on their surface current distribution. Experiments are carried out to verify the simulation results, and the experimental results show that the absorption at normal incidence is above 90% from 3.17 to 3.22GHz, the size for the absorber is 0.1λ×0.1λ, the three-order FPMA is miniaturized 60% compared with the zero-order ones, and the array antennas significantly obtain the RCS reduction without the radiation deterioration.
机译:为了使理想的超材料吸收体小型化,提出并研究了一种分形的三阶斜交叉偶极缝隙结构。分形完美超材料吸收器(FPMA)由被有损介电基板隔开的两个金属层组成。顶层蚀刻了设置在正方形贴片中的三阶倾斜的分形十字形偶极子缝,底层是固态金属。执行参数研究是为了提供实用的设计指南。设计,制造,测量了厚度为0.0106λ(λ为3.18 GHz的波长)的FPMA原型,并将其装载在1×10波导缝隙阵列天线上,以减小带内雷达截面(RCS) )基于它们的表面电流分布。通过实验验证了仿真结果,实验结果表明,在3.17至3.22GHz范围内,垂直入射时的吸收率大于90%,吸收体尺寸为0.1λ×0.1λ,三阶FPMA被小型化。与零阶天线相比,阵列天线的效率提高了60%,并且阵列天线显着提高了RCS的降低,而没有辐射恶化。

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