王维婧,史琰,孟赞奎,等. 一种双宽带雷达散射截面减缩的超表面设计方法[J]. 电波科学学报,2021,36(6):887-895. DOI: 10.12265/j.cjors.2021073
      引用本文: 王维婧,史琰,孟赞奎,等. 一种双宽带雷达散射截面减缩的超表面设计方法[J]. 电波科学学报,2021,36(6):887-895. DOI: 10.12265/j.cjors.2021073
      WANG W J, SHI Y, MENG Z K, et al. A metasurface design method for dual wide band radar cross section reduction[J]. Chinese journal of radio science,2021,36(6):887-895. (in Chinese). DOI: 10.12265/j.cjors.2021073
      Citation: WANG W J, SHI Y, MENG Z K, et al. A metasurface design method for dual wide band radar cross section reduction[J]. Chinese journal of radio science,2021,36(6):887-895. (in Chinese). DOI: 10.12265/j.cjors.2021073

      一种双宽带雷达散射截面减缩的超表面设计方法

      A metasurface design method for dual wide band radar cross section reduction

      • 摘要: 超表面由于其灵活的电磁波调控能力而受到广泛关注,基于其在雷达散射截面(radar cross section, RCS)减缩设计中受限于工作频带单一、设计通用性低的问题,文中提出一种新型的叠层型超表面设计方法,来灵活实现双宽带的RCS减缩. 首先设计了工作在两个频带且具有极化旋转特性的超表面结构及低通频率选择表面(frequency selective surface, FSS),并将其与两个极化旋转超表面相集成,形成了具有双频带极化旋转特性的超表面结构;然后基于极化相消原理,将该阵列进行旋转排布,形成2×2的阵列结构,以实现在6.6~12.7 GHz和27.8~38.1 GHz两个频带内−10 dB的RCS减缩. 对所设计的超表面结构进行实物加工,实测结果与仿真结果对比吻合良好,从而验证了双带RCS减缩的良好特性.

         

        Abstract: Metasurface has attracted much attentions due to its ability of flexible manipulation of electromagnetic wave. However, the metasurface is limited to the single operating band and poor design generality when it is used for radar cross section (RCS) reduction. In this paper, a stacked metasurface design method has been developed to flexibly achieve dual wide band RCS reduction. Two subarrays with polarization conversion characteristic are firstly designed to operate in two wide bands, respectively. Then a low-pass frequency selective surface (FSS) is developed and sandwiched between two metasurface subarrays to achieve a subarray with the dual-band polarization conversion performance. With the arrangement of the dual-band subarray into a 2×2 array in a rotation way according to the polarization cancellation, the resultant metasurface structure has two −10 dB RCS reduction bands covering 6.6−12.7 GHz and 27.8−38.1 GHz. The designed prototype is fabricated and measured. The simulation and measurement results are given to demonstrate the good dual-band RCS reduction performance.

         

      /

      返回文章
      返回