非均相复合分形FSS增强隐身微波吸收的关键分析

R. Panwar, Smitha Puthucheri, A. Singh, Dharmendra Singh, V. Agarwala
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引用次数: 6

摘要

目前迫切需要开发一种能提供宽带宽和低涂层厚度的良好吸收的吸收剂。在本研究中,对三种不同的吸波结构,即双层、分形频率选择表面(FSS)集成和分形FSS夹层吸波结构进行了关键分析,以获得厚度(t≤1.5 mm)和带宽(RL≤10 dB)良好的吸波效果。以合成的非均相复合材料的有效复介电常数和磁导率为基础,利用遗传算法对复合材料的选择、层序和厚度进行优化。Sierpinski地毯分形FSS夹层双层吸波器(t = 1.3 mm)在8.7 GHz时的最大RL为41.29 dB,在8.2 ~ 11.3 GHz范围内的带宽为3.1 GHz。所研制的薄型宽频带吸波器为隐身应用提供了有效可行的解决方案。
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Critical analysis of fractal FSS with heterogeneous composite to enhance microwave absorption for stealth application
Nowadays there is a stringent need to develop an absorber that can provide good absorption with wide bandwidth and lower coating thickness. In this study, a critical analysis has been carried out over three different kind of absorbing structures, i.e., double layer, fractal Frequency Selective Surface (FSS) integrated, and fractal FSS sandwiched absorbers for achieving good absorption with thickness (t ≤ 1.5 mm) and bandwidth (RL ≤ 10 dB). The selection of suitable composite, layer preferences, and thickness has been optimized using genetic algorithm (GA) on the basis of effective complex dielectric permittivity and magnetic permeability of the synthesized heterogeneous composites. The Sierpinski carpet fractal FSS sandwiched double layer absorber (t = 1.3 mm) shows a strongest RL of 41.29 dB at 8.7 GHz with broad bandwidth of 3.1 GHz in the range of 8.2 to 11.3 GHz. The developed thin and broadband absorber provides an effective and feasible solution for stealth application.
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