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Calculation of radiation characteristics of cavity-backed aperture antennas using a combined finite element method, method of moments, and geometrical theory of diffraction technique

机译:结合有限元方法,矩量法和衍射技术的几何理论,计算后腔孔径天线的辐射特性

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摘要

Radiation pattern prediction analysis of elliptically polarized cavity-backed aperture antennas in a finite ground plane is carried out using a combination of the finite element method (FEM), method of moments (MoM), and geometrical theory of diffraction (GTD). The magnetic current on the cavity-backed aperture in an infinite ground plane is calculated using the combined FEM-MoM analysis. GTD is used to calculate the diffracted fields due to both soft and hard polarizations at the edges of the finite ground plane. The slope of the incident magnetic field at the diffraction points is derived and analytical expressions are presented. Numerical results for the radiation patterns of a cavity-backed coaxial cavity and also a cavity-backed circular spiral microstrip patch antenna excited by a coaxial probe in a finite rectangular ground plane are computed and compared with measured results.
机译:结合有限元方法(FEM),矩量方法(MoM)和衍射几何理论(GTD),对有限接地平面中的椭圆偏振腔后置孔径天线的辐射方向图进行了预测分析。使用组合的FEM-MoM分析,可以计算出无限接地平面中背腔孔径上的磁电流。 GTD用于计算由于有限接地平面边缘处的软极化和硬极化引起的衍射场。推导了衍射点处入射磁场的斜率,并给出了解析表达式。计算了在有限的矩形接地平面上由同轴探针激发的背腔同轴腔以及背腔圆形螺旋微带贴片天线辐射方向图的数值结果,并将其与测量结果进行了比较。

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