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Dielectric-Loaded Ultrawideband RCS Reduction Structures

机译:介电加载超视线RCS减少结构

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摘要

A novel yet geometrically simple radar cross section suppression structure is proposed. Unlike designs fostered in prior works, which contain multiple elevated metal layers, the proposed configuration is only accomplished with a dielectric superstrate. Dielectric loadings of different properties such as permittivity, loss tangent, and thickness are applied to form phase cancellation structures. Contrary to structures based on resonant elements, the proposed constructs are electrically large and are made of homogeneous loadings. A high-frequency-method is developed to explain how the ultrawideband backscattering suppressing feature is accomplished. Since it assesses structure reflection properties in a timely fashion with the results comparable to the ones acquired from full-wavelength tools, design optimization can be carried out via grid search. One design exhibits a 4.09:1 bandwidth ratio of 10 dB backscattering reduction for normal incidence, while another achieves a 70% bandwidth of 20 dB reduction. Angular domain performances were also researched. By adopting either the conventional checkerboard pattern or our previously developed random patch pattern, strong backscattering lobes can be avoided near the boresight region. Performance verification via measurements on prototypes is also provided.
机译:提出了一种新颖的几何简单雷达横截面抑制结构。与现有工作中的设计不同,该设计包含多个升高的​​金属层,所提出的配置仅采用电介质叠层完成。应用诸如介电常数,损耗和厚度的不同性质的介电负载以形成相位消除结构。与基于谐振元件的结构相反,所提出的构造是电大并且由均匀的载荷制成。开发了一种高频方法以说明如何完成超法带背散抑制功能。由于它以及时的方式评估结构反射特性,因此与从全波长工具获取的结果相当,因此可以通过网格搜索来执行设计优化。一种设计表现出4.09:1带宽比率为10 dB的反向散射,对正常发病率降低,而另一个设计达到了70%的带宽为20dB减少。还研究了角度域表演。通过采用传统的棋盘图案或我们先前开发的随机贴片模式,可以避免在钻石区域附近避免强的后散裂。还提供了通过测量原型的性能验证。

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