首页> 外文会议>IEEE Antennas and Propagation Society International Symposium, 2009. APSURSI '09 >Optimally designed microstructures of electromagnetic materials via inverse homogenization
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Optimally designed microstructures of electromagnetic materials via inverse homogenization

机译:通过逆均化优化设计电磁材料的微观结构

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In this study, a synthesis framework for designing artificial electromagnetic materials with periodic repetitions and desired constitutive parameters is proposed. The framework is based on a homogenized material model and its numerical solution via COMSOL. Material model results are shown to agree well with mixing formulas and existing models in the literature. Design results show that the GA based framework is capable of designing material compositions of a periodically repeated unit cell to achieve desired electromagnetic material properties. An array configuration of the unit cell design was fabricated. Future work comprises material measurements, extension of the framework to 3D structures, and its application to the design of magnetic photonic crystals.
机译:在这项研究中,提出了一种合成框架,用于设计具有周期性重复和所需本构参数的人造电磁材料。该框架基于均质材料模型及其通过COMSOL的数值解决方案。材料模型结果显示与混合公式和文献中的现有模型非常吻合。设计结果表明,基于GA的框架能够设计周期性重复的晶胞的材料成分,以实现所需的电磁材料性能。制作了单位单元设计的阵列配置。未来的工作包括材料测量,将框架扩展到3D结构及其在磁性光子晶体设计中的应用。

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