首页> 外文OA文献 >Investigation into the use of active frequency selective surfaces to extend the absorption bandwidth of a conventional Salisbury screen absorber
【2h】

Investigation into the use of active frequency selective surfaces to extend the absorption bandwidth of a conventional Salisbury screen absorber

机译:使用有源频率选择表面扩展常规Salisbury屏幕吸收器吸收带宽的研究

摘要

It is well accepted that the absorption bandwidth of a metal back-plane absorber, built with either dielectric or magnetic materials, is inherently narrow. It is also well known that in order to increase the absorption bandwidth, the absorber thickness must be increased through decreasing the permittivity or permeability of its spacer. This improved performance, however, comes at a cost. The absorption bandwidth is increased at the expense of not only an increase of absorber thickness, specially at lower frequencies, but also the yielding of a mechanically weaker structure. The most important implication of the former is that there is a tradeoff between absorber thickness and absorption bandwidth. These two conflicting absorber properties are, however, of equal importance since the optimum absorber is one which has a small thickness as well as a wideband absorption response. This inherent trade-off is due to the fundamental frequency limitations imposed by the constitutive parameters of materials and is more detrimental at microwave frequencies.The aim of the research programme described in this thesis was thus to investigate the use of adaptive complex impedance structures, in the form of active frequency selective surfaces (AFSSs), to extend the absorption bandwidth of a small thickness Salisbury screen absorber, thus addressing directly the aforementioned by minimizing the trade-off that exists between absorber thickness and absorption bandwidth.
机译:众所周知,用电介质或磁性材料制成的金属底板吸收器的吸收带宽本来就很窄。还众所周知,为了增加吸收带宽,必须通过减小其隔离物的介电常数或磁导率来增加吸收体的厚度。但是,这种改进的性能需要付出一定的代价。增加吸收带宽的代价不仅是增加吸收体的厚度,特别是在较低频率下,还包括增加机械强度较弱的结构。前者的最重要含义是在吸收体厚度和吸收带宽之间需要权衡。然而,这两个相互矛盾的吸收器特性是同等重要的,因为最佳吸收器是厚度和宽带吸收响应都较小的吸收器。这种固有的折衷是由于材料的本构参数施加的基本频率限制,并且在微波频率上更加有害。因此,本文所描述的研究程序的目的是研究自适应复数阻抗结构的使用。有源频率选择表面(AFSS)的形式,以扩展小厚度Salisbury丝网吸收器的吸收带宽,从而通过最小化吸收器厚度和吸收带宽之间的折衷来直接解决上述问题。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号