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首页> 外文期刊>IEEE Transactions on Magnetics >Edge boundary conditions derived from specific modes of microstrip line in planar circuits two-dimensional analysis
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Edge boundary conditions derived from specific modes of microstrip line in planar circuits two-dimensional analysis

机译:平面电路二维分析中基于微带线特定模式的边缘边界条件

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The fullwave analysis of the specific modes of microstrip lines is shown to provide an edge boundary condition for the two-dimensional analysis of planar circuits. This edge line boundary condition accounts for the dispersive behavior of the fringe fields all around the original open structure and relates the normal derivative of the electric field to the tangential one. Applied to a microstrip line, this edge line boundary condition gives an approximated dispersion equation consistent with the fullwave one. The first step will be to discuss specific modes in fullwave analysis in the spectral domain. The second step substitutes the edge line boundary condition for the usual Neuman's boundary condition in the integral Green's equation applied to planar discontinuities. Application to a symmetrical patch shows computed results that concord with experimental data in the whole frequency range.
机译:示出了微带线的特定模式的全波分析为平面电路的二维分析提供了边缘边界条件。该边缘线边界条件说明了边缘场在原始开放结构周围的色散行为,并将电场的正态导数与切向场相关。应用于微带线,该边缘线边界条件给出了与全波相一致的近似色散方程。第一步将是在光谱域中讨论全波分析中的特定模式。第二步将边线边界条件替换为应用于平面不连续点的格林格林方程中通常的诺伊曼边界条件。应用于对称贴片可显示与整个频率范围内的实验数据相符的计算结果。

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