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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >The propagation characteristics of signal lines embedded in a multilayered structure in the presence of a periodically perforated ground plane
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The propagation characteristics of signal lines embedded in a multilayered structure in the presence of a periodically perforated ground plane

机译:在存在周期性穿孔的接地平面的情况下,嵌入多层结构的信号线的传播特性

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The propagation characteristics of waves along a periodic array of parallel signal lines in a multilayered structure in the presence of a periodically perforated ground plane are studied. To analyze this structure, the spectral-domain immittance approach is used to derive the Green's function. The surface current density on the conductors is expressed in terms of a set of rooftop subdomain basis functions. The boundary condition is then enforced in conjunction with the Galerkin procedure, leading to an eigenvalue problem for the propagation constant which is solved by the Newton-Raphson algorithm. The dispersion characteristics of these signal lines are studied for both balanced and unbalanced excitations with the relative permittivities of the various layers as parameters. Numerical results are presented and compared with available data. Extension of the present method to treat conductors with finite sheet resistances is also discussed.
机译:研究了在存在周期性穿孔的接地平面的情况下,多层结构中沿平行信号线的周期性阵列的波的传播特性。为了分析这种结构,使用了频谱域阻抗法来推导格林函数。导体上的表面电流密度用一组屋顶子域基函数表示。然后结合Galerkin程序强制执行边界条件,从而导致传播常数的特征值问题,该问题通过Newton-Raphson算法得以解决。研究了这些信号线的色散特性,以平衡和不平衡激励为参数,以各层的相对介电常数作为参数。给出了数值结果并将其与可用数据进行比较。还讨论了本方法的扩展以处理具有有限薄层电阻的导体。

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