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首页> 外文期刊>Journal of magnetism and magnetic materials >Design and preparation of an ultrathin broadband metamaterial absorber with a magnetic substrate based on genetic algorithm
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Design and preparation of an ultrathin broadband metamaterial absorber with a magnetic substrate based on genetic algorithm

机译:基于遗传算法的带磁性基体超薄宽带超材料吸收器的设计与制备

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摘要

High-efficiency microwave absorption materials are widely used in electronic equipment and communication facilities. This study aims to develop a broad-bandwidth metamaterial absorber based on the magnetic substrate with a central frequency selective surface (FSS). It is however, different from the strategy of expanding the bandwidth for metamaterial absorbers reported in other literatures, in this study, a unique development strategy that involves selecting the most suitable magnetic substrate from a database using genetic algorithm is adopted. By adding an optimized FSS layer to the magnetic substrate, its loss performance and impedance matching performance are considerably improved, and the resulting metamaterial absorber exhibits excellent absorption properties. At a thickness of 3.1 mm, the reflection loss in the range from 2.5 to 17.2 GHz is below -10 dB, which is significantly better than the values reported in previous studies. In addition, the prepared metamaterial absorber possesses excellent absorption characteristics under oblique incidence conditions. The strategy proposed in this study leads to the successful development of a high-efficiency metamaterial absorber and represents a more effective approach than those previously used in the field.
机译:高效微波吸收材料被广泛用于电子设备和通信设施中。这项研究旨在开发一种基于具有中心频率选择表面(FSS)的磁性基板的宽带超材料吸收器。但是,它与其他文献中报道的为超材料吸收体增加带宽的策略不同,在这项研究中,采用了一种独特的开发策略,其中涉及使用遗传算法从数据库中选择最合适的磁性衬底。通过将优化的FSS层添加到磁性基板,其损耗性能和阻抗匹配性能得到显着改善,并且所得的超材料吸收体表现出优异的吸收性能。厚度为3.1毫米时,反射损耗在2.5至17.2 GHz范围内低于-10 dB,这明显好于先前研究报告的值。另外,制备的超材料吸收剂在倾斜入射条件下具有优异的吸收特性。这项研究中提出的策略导致成功开发了一种高效的超材料吸收器,并且比以前在该领域中使用的方法更有效。

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