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Design of a salisbury screen absorber using frequency selective surfaces to improve bandwidth and angular stability performance

机译:使用频率选择性表面来改善带宽和角度稳定性的Salisbury屏幕吸收器的设计

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A new design method that greatly enhances the reflectivity bandwidth and angular stability beyond what is possible with a simple Salisbury screen is described. The performance improvement is obtained from a frequency selective surface (FSS) which is sandwiched between the outermost 377 V/square resistive sheet and the ground plane. This is designed to generate additional reflection nulls at two predetermined frequencies by selecting the size of the two unequal length printed dipoles in each unit cell. A multiband Salisbury screen is realised by adjusting the reflection phase of the FSS to position one null above and the other below the inherent absorption band of the structure. Alternatively by incorporating resistive elements midway on the dipoles, it is shown that the three absorption bands can be merged to create a structure with a 210 dB reflectivity bandwidth which is 52% larger and relatively insensitive to incident angle compared to a classical Salisbury screen having the same thickness. CST Microwave Studio was used to optimise the reflectivity performance and simulate the radar backscatter from the structure. The numerical results are shown to be in close agreement with bistatic measurements for incident angles up to 408 over the frequency range 5.4218 GHz.
机译:描述了一种新的设计方法,该方法大大提高了反射率带宽和角度稳定性,超出了简单的Salisbury屏幕所能达到的范围。从夹在最外面的377 V /平方电阻片和接地层之间的频率选择表面(FSS)获得性能改进。通过选择每个单位像元中两个长度不等的打印偶极子的大小,可以设计为在两个预定频率处生成其他反射零点。通过调节FSS的反射相位,将一个固有的吸收带置于结构的固有吸收带之上,而将另一个抑制在该结构的固有吸收带之下,可以实现多频带的Salisbury屏幕。可替代地,通过在偶极子的中途并入电阻元件,显示出可以吸收三个吸收带,以形成具有210 dB反射率带宽的结构,该结构与传统的Salisbury屏幕相比具有52 dB的反射带宽大,并且对入射角相对不敏感。相同的厚度。 CST Microwave Studio用于优化反射率性能并从结构模拟雷达的反向散射。结果表明,在5.4218 GHz频率范围内,入射角高达408时,数值结果与双基地测量结果非常吻合。

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