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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Spectral Domain Analysis of Open Single and Coupled Microstrip Lines With Polygonal Cross-Section in Bound and Leaky Regimes
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Spectral Domain Analysis of Open Single and Coupled Microstrip Lines With Polygonal Cross-Section in Bound and Leaky Regimes

机译:约束区域与泄漏区域中具有多边形横截面的开放式单耦合微带线的谱域分析

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摘要

Aim of this work is the analysis of the propagation of bound and leaky modes in perfectly conducting open single and coupled microstrip lines with polygonal cross-section. The problem is formulated as a new numerically stable one-dimensional electric field integral equation (EFIE) in the spectral domain. Quick convergence is achieved by expanding the unknown surface current density with functions reconstructing the edge behaviour and continuity conditions in a Galerkin scheme. Due to the reciprocity, the impedance matrix has symmetries allowing to cut down the number of coefficients to be numerically evaluated. The choice of analytically Fourier transformable expansion functions leads to reduce the coefficients of the impedance matrix to single integrals efficiently evaluated by means of an analytical acceleration technique.
机译:这项工作的目的是分析具有完美横截面的单根和耦合微带线的完美导通中束缚和泄漏模态的传播。该问题被公式化为谱域中新的数值稳定的一维电场积分方程(EFIE)。通过使用Galerkin方案中的重构边缘行为和连续性条件的功能扩展未知表面电流密度,可以实现快速收敛。由于互易性,阻抗矩阵具有对称性,可以减少要进行数值评估的系数的数量。解析傅里叶可变换展开函数的选择导致将阻抗矩阵的系数减小为借助解析加速技术有效评估的单个积分。

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