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Metamaterial Absorber based on Minkowski Fractal Patch for Stealth Applications

机译:基于Minkowski分形补丁的超材料吸收器,用于隐身应用

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Radar absorbing structures (RAS) have gained significant importance in aerospace domain with the advent of stealth technology. However, it is still a challenging task to achieve high levels of power absorption over a broad range of frequencies with minimum thickness. Advanced electromagnetic techniques like application of frequency selective surfaces (FSS) are attractive options for obtaining superior absorption characteristics at reduced thickness. However, FSS-based absorbers using patches as unit cell are usually narrowband due to resonance conditions. In this regard, the present paper proposes a novel metamaterial absorber based on Minkowski fractal patch configuration for X-band applications. Several unit cells with dimensions optimized for resonance at closely spaced frequencies have been used in a single absorber. The full wave simulation results clearly illustrate the broadening of bandwidth accomplished using dimensionally different fractals arranged appropriately on the absorber.
机译:随着隐身技术的出现,雷达吸收结构(RAS)在航空航天领域已变得非常重要。然而,以最小的厚度在很宽的频率范围内实现高水平的功率吸收仍然是一项艰巨的任务。先进的电磁技术,如频率选择表面(FSS)的应用,是吸引人的选择,可以在减小厚度的情况下获得出色的吸收特性。然而,由于共振条件,使用贴片作为单元电池的基于FSS的吸收器通常是窄带的。在这方面,本文提出了一种基于Minkowski分形斑块配置的新型超材料吸收体,用于X波段应用。在单个吸收器中已经使用了几个尺寸优化的单元,这些单元的尺寸针对在近距离频率下的谐振进行了优化。全波仿真结果清楚地说明了使用适当地布置在吸收体上的尺寸不同的分形实现的带宽扩展。

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