Modeling Transmission Lines With Open Boundaries via Infinite Mapping Layer

IF 6.9 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE journal of microwaves Pub Date : 2024-04-24 DOI:10.1109/JMW.2024.3385047
Gines Garcia-Contreras;Juan Córcoles;Jorge A. Ruiz-Cruz;Matteo Oldoni;Lorenzo Codecasa;Gian Guido Gentili
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Abstract

In this paper we introduce the use of several different Infinite Mapping Layers to model open boundaries in the 2-D Finite Element Method for the computation of transmission line parameters. The transformation maps a semi-infinite interval to a finite interval, thereby providing a simple and accurate description of open boundaries while keeping the size of the computational domain very compact. The method has been evaluated and tested on a variety of common transmission line geometries appearing in the literature and its accuracy is validated by comparing the results with canonical cases having closed expressions and with arbitrary geometries computed with commercial software tools. Various geometrical transformations have been developed and tested, and their performances evaluated in terms of accuracy and efficiency. Finally, the possibility of using a radial Infinite Mapping Layer has also been considered.
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通过无限映射层为具有开放边界的输电线路建模
在本文中,我们介绍了在计算输电线路参数的二维有限元方法中使用几种不同的无限映射层来模拟开放边界。这种转换将半无限区间映射为有限区间,从而提供了对开放边界的简单而准确的描述,同时使计算域的尺寸保持非常紧凑。该方法已在文献中出现的各种常见传输线几何图形上进行了评估和测试,并通过与具有封闭表达式的典型案例和使用商业软件工具计算的任意几何图形的结果进行比较,验证了其准确性。还开发并测试了各种几何变换,并对其准确性和效率进行了评估。最后,还考虑了使用径向无限映射层的可能性。
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CiteScore
10.70
自引率
0.00%
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审稿时长
8 weeks
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Front Cover Table of Contents Introduction to the Fall 2024 Issue IEEE Microwave Theory and Technology Society Information Over-the-Air Phase Noise Spectral Density Measurement for FMCW Radar Sensors
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