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Spectral domain analysis of rectangular stacked patches printed on a substrate characterized by dielectric and magnetic anisotropy

机译:以介电和磁各向异性为特征的印刷在基板上的矩形堆叠斑块的光谱域分析

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AbstractSpectral domain formulation is provided for the analysis of rectangular stacked patches printed on a substrate characterized by dielectric and magnetic uniaxial anisotropy. Detailed analytical expressions of the dyadic Green’s functions are derived. Galerkin’s procedure is applied to solve the electric field integral equations, and the resonance characteristics are determined by solving the characteristic equation. Numerical results show that the influence of the magnetic anisotropy on the resonant frequencies is highly dependent on the permeability of the medium, where for a non-magnetic medium, the impact of the existing anisotropy was found negligible. However, for a magnetic medium, the anisotropy has a large impact on the resonant frequencies. Moreover, the influence of each of the components of the permeability tensor has been also reported.
机译: Abstract 提供了光谱域公式,用于分析印刷在基板上的矩形叠片具有介电和磁单轴各向异性的特征。推导了二进式格林函数的详细分析表达式。应用Galerkin的方法求解电场积分方程,并通过求解特征方程确定共振特性。数值结果表明,磁各向异性对共振频率的影响高度依赖于介质的磁导率,而对于非磁介质,现有各向异性的影响可以忽略不计。但是,对于磁性介质,各向异性对共振频率有很大的影响。此外,还已经报道了渗透率张量的各个分量的影响。

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