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首页> 外文期刊>Journal of Computational Electronics >Modeling and optimization of radiation characteristics of triangular superconducting microstrip antenna array
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Modeling and optimization of radiation characteristics of triangular superconducting microstrip antenna array

机译:三角形超导微带天线阵列辐射特性的建模与优化

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This paper presents a mathematical model of array of equilateral triangular superconducting microstrips implanted in multilayered substrates. The full-wave method is used to calculate the radiation characteristics of equilateral triangular microstrip antennas. In this method, the electric field integral equation for a current element on a grounded dielectric slab of infinite extent is developed by basis functions. An improved analytical model is presented taking into account anisotropic substrates, superconducting material for the triangular patch and multilayered structure. The swarm particle optimization is used to determine an optimum set of excitation and position of the antenna element that provides a radiation pattern with maximal side lobe level reduction. The computed data are found to be in good agreement with results obtained using other methods.
机译:本文提出了一种数学模型的等边三角形超导微带阵列植入多层基板。全波方法用于计算等边三角形微带天线的辐射特性。在该方法中,通过基函数建立了无限大程度接地接地板上的电流元件的电场积分方程。提出了一种改进的分析模型,其中考虑了各向异性基底,三角形贴片的超导材料和多层结构。群粒子优化用于确定天线元件的最佳激励和位置集,以提供具有最大旁瓣电平降低的辐射方向图。发现计算的数据与使用其他方法获得的结果非常吻合。

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