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A flexible approach combining the spectral domain method and impedance boundary condition for the analysis of microstrip lines

机译:结合频谱域方法和阻抗边界条件的灵活方法,用于分析微带线

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摘要

An impedance boundary condition model is incorporated in the spectral domain formulation to calculate the transmission characteristics of a microstrip line with a lossy conducting strip. Subsectional rectangular pulse functions are used as the basis functions for the surface current distribution because of the finite conductivity of the conducting strip. The approach has the advantage of being more flexible without assuming the edge condition of the surface current distribution and is numerically efficient. Numerical results on the phase and attenuation constants of a superconducting microstrip line are computed for a comparison.
机译:在频谱域公式中并入了一个阻抗边界条件模型,以计算具有损耗导电带的微带线的传输特性。由于导电带的导电性有限,分段矩形脉冲函数被用作表面电流分布的基础函数。该方法具有在不假设表面电流分布的边缘条件的情况下更加灵活的优点,并且在数值上是有效的。计算了超导微带线的相位和衰减常数的数值结果以进行比较。

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