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A Hybrid Optimization Method to Analyze Metamaterial-Based Electrically Small Antennas

机译:一种分析基于超材料的电小天线的混合优化方法

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摘要

A model of an idealized radiating system composed of an electrically small electric dipole antenna enclosed in an electrically small multilayered metamaterial shell system is developed analytically. The far-field radiation characteristics of this system are optimized using a GA-MATLAB based hybrid optimization model. The optimized-analytical model is specifically applied to a spherical glass shell filled with a "cold plasma" epsilon-negative (ENG) medium. These analytical results are confirmed using ANSOFT HFSS and COMSOL Multiphysics simulations; these numerical results include input impedance and overall efficiency values not available with the analytical model. The optimized-analytical model is also used to achieve electrically small nonradiating metamaterial-based multilayered spherical shell designs. The optimized shell properties are exploited to obtain multiband radiating and nonradiating response characteristics. Dispersion properties of the ENG materials are also included in all the analytical models; the bandwidth characteristics of these systems are discussed
机译:通过分析开发了一种理想的辐射系统模型,该模型由包围在电气小多层超材料外壳系统中的电气小电偶极天线组成。使用基于GA-MATLAB的混合优化模型优化了该系统的远场辐射特性。优化分析模型专门应用于填充有“冷等离子体”ε-负(ENG)介质的球形玻璃壳。这些分析结果已通过ANSOFT HFSS和COMSOL Multiphysics仿真得到证实;这些数值结果包括分析模型无法提供的输入阻抗和整体效率值。优化的分析模型还用于实现基于电的小型非辐射超材料基多层球形壳设计。利用优化的外壳特性来获得多波段辐射和非辐射响应特性。 ENG材料的色散特性也包括在所有分析模型中。讨论了这些系统的带宽特性

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