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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Equivalent network representation of boundary conditions involving generalized trial quantities-application to lossy transmission lines with finite metallization thickness
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Equivalent network representation of boundary conditions involving generalized trial quantities-application to lossy transmission lines with finite metallization thickness

机译:涉及广义试验量的边界条件的等效网络表示-应用于具有有限金属化厚度的有损传输线

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摘要

The derivation of integral equations for solving boundary conditions by mere application of analog Kirchhoff's and Ohm's laws is used. Generalized trial quantities are introduced as virtual adjustable sources in the equivalent network representation of boundary conditions. The lossy conductor domain of a planar transmission line is represented by a particular two-port. Thus, metallic losses can be evaluated for any metallization thickness without restricting the conductor modeling to a simple surface impedance approximation. In this paper, this two-port model is discussed and numerical results relative to a lossy coplanar waveguide (CPW) are presented. These results are in very good agreement with those obtained from the mode-matching technique and with other experimental data available in the literature. The size of matrices involved in the calculation of losses is twice as large as that in the lossless case. Moreover, the authors' formulation can be easily applied to superconducting planar transmission lines.
机译:仅使用模拟基尔霍夫定律和欧姆定律就可以推导求解边界条件的积分方程。在边界条件的等效网络表示中,将广义试验量作为虚拟可调源引入。平面传输线的有损导体域由特定的两个端口表示。因此,可以评估任何金属化厚度的金属损耗,而不必将导体模型限制为简单的表面阻抗近似值。在本文中,讨论了此两端口模型,并给出了与有损共面波导(CPW)相关的数值结果。这些结果与从模式匹配技术获得的结果以及文献中提供的其他实验数据非常吻合。计算损失所涉及的矩阵大小是无损情况下的两倍。此外,作者的公式可以轻松地应用于超导平面传输线。

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