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Improvement in Cross Polarized Performances of Microwave Absorber Using Sequential Metamaterial Inspired Structures

机译:顺序超材料启发结构改善微波吸收体的交叉极化性能

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In this paper, an approach for improvement in the cross polarized absorption performances of microwave absorber is presented using the sequential metamaterial inspired structures. Initially the proposed unit cell of the metamaterial structure shows minimum value of cross polarized absorption whereas its copolarized absorption shows minimum 10 dB absorption in the entire X band frequency region. The proposed unit cell of metamaterial inspired structure is based on the hexagonal and circular rings, the hexagonal ring is splitted into two arms. The hexagonal arms that acts as the asymmetric structure is primarily responsible for creating the double resonances, further the co polarized absorption is enhanced due to the presence of inner circular ring. However in this situation the cross polarized absorption is reduced significantly, thus the overall absorption performance of such structure reduces significantly. In order to improve the effective absorber performance of such structure, the same structure is rotated sequentially at an angle of 45° in regular steps and a unit cell of sequential material structure is generated. The proposed unit cell consists of 2 X 4 configuration of metamaterial structure. The proposed configuration of the sequential metamaterial structure shows the significant improvement in the copolarized and cross polarized absorber performances. Further the proposed configuration is validated against the measurement result, it has been observed that the simulated performances are in very close agreement with the measured performances.
机译:在本文中,提出了一种利用顺序的超材料激发结构来改善微波吸收器的交叉极化吸收性能的方法。最初,所提出的超材料结构的晶胞显示出最小的交叉极化吸收值,而其同极化吸收在整个X频带频率区域显示出最小10 dB的吸收。拟议的超材料启发结构的晶胞是基于六边形和圆形环,六边形环被分成两个臂。用作不对称结构的六边形臂主要负责产生双共振,此外,由于存在内圆环,增强了共极化吸收。然而,在这种情况下,交叉极化吸收显着降低,因此这种结构的整体吸收性能显着降低。为了提高这种结构的有效吸收体性能,以规则的步骤将相同的结构以45°的角度依次旋转,并生成具有顺序的材料结构的晶胞。拟议的晶胞由超材料结构的2 X 4构型组成。所提出的顺序超材料结构的配置显示出共极化和交叉极化吸收器性能的显着改善。此外,针对测量结果验证了所提出的配置,已观察到模拟性能与测量性能非常接近。

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