首页> 外文期刊>Microwaves, Antennas & Propagation, IET >Circular configuration of perforated dielectrics for ultra-broadband, wide-angle, and polarisation-insensitive monostatic/bistatic RCS reduction
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Circular configuration of perforated dielectrics for ultra-broadband, wide-angle, and polarisation-insensitive monostatic/bistatic RCS reduction

机译:穿孔电介质的圆形结构,可用于超宽带,广角和对极化不敏感的单静态/双静态RCS减小

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摘要

Here, a new strategy of ultra-broadband monostatic and bistatic radar cross-section reduction (RCSR) was theoretically investigated. A circular configuration of perforated dielectrics, as the coating layer, was designed to have full control on the bistatic RCS signatures of flat metallic objects. Using the proposed phase cancellation method, a customised level of bistatic RCSR (BRR) as well as operating frequency bandwidth were interpretively achieved. The presented study offered a robust and straightforward RCSR technique which does not rely on conventional blind optimisations. The coating layer was capable of reducing the monostatic and BRR of >10 dB in a broad frequency range from 8.3 to 23.1 GHz (BW = 94%). The results were significantly improved compared to those of preceding researches. Besides, unlike the preceding researches, the performance of the designed coating layer was analytically justified under TE and TM polarisations of oblique incidences. A good agreement was observed between numerical simulations and theoretical predictions, confirming the polarisation-independent feature of the designed stealth coating layer for incident angles up ton$60^circ $60n. These superior performances and the flexibility of design guarantee the applicability of the proposed RCSR approach for various stealth applications.
机译:在此,理论上研究了一种超宽带单基地和双基地雷达截面减小(RCSR)的新策略。设计圆形的穿孔电介质作为涂层,以完全控制平面金属物体的双基地RCS签名。使用所提出的相位消除方法,可以解释性地实现定制水平的双基地RCSR(BRR)以及工作频率带宽。提出的研究提供了一种不依赖常规盲目优化的强大而直接的RCSR技术。该涂层在从8.3到23.1 GHz的宽频率范围内(BWB = 94%)能够降低单静态和BRR> 10 dB。与先前的研究相比,结果得到了显着改善。此外,与前面的研究不同,在倾斜入射的TE和TM偏振下,设计涂层的性能在分析上是合理的。在数值模拟和理论预测之间观察到了很好的一致性,证实了设计的隐形涂层的偏振独立特性对于入射角高达ton $ 60 ^ circ $ 60 n。这些卓越的性能和设计的灵活性保证了所提出的RCSR方法可用于各种隐形应用。

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