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Practical Implementation of the Spatial Images Technique for the Analysis of Shielded Multilayered Printed Circuits

机译:空间图像技术在多层屏蔽印制电路分析中的实际实现

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摘要

In this paper, a practical implementation of the spatial images technique for the analysis of shielded multilayered printed circuits inside convex cavities is proposed. A new method is introduced in order to automatically locate the images surrounding the structure in order to impose the appropriate boundary conditions for the potentials. The boundary conditions are imposed at discrete points along the cavity wall and, therefore, the technique proposed is an approximation to the exact cavity modeling. Furthermore, for the analysis of electrically long cavities, the use of several rings of images surrounding the entire cavity at different heights is employed. Using the special features of the formulation, a new method of moments implementation combined with the spatial images technique is proposed in order to efficiently analyze practical multilayered printed filters, considerably reducing the computational cost. Several examples with CPU time comparisons are provided, demonstrating the accuracy and efficiency of the new technique. A novel transversal filter in a trapezium-shaped cavity is designed, manufactured, and tested for the first time using the spatial images technique.
机译:本文提出了一种空间图像技术的实际实现,用于分析凸腔内部的多层屏蔽印刷电路。为了自动定位围绕结构的图像,以便为电势施加适当的边界条件,引入了一种新方法。边界条件是沿空腔壁的离散点施加的,因此,提出的技术是对精确空腔模型的近似。此外,为了分析电长腔,采用了以不同高度围绕整个腔的几个图像环。利用配方的特殊功能,提出了一种结合空间图像技术的矩量实现新方法,以有效地分析实用的多层印刷滤光片,从而大大降低了计算成本。提供了一些带有CPU时间比较的示例,证明了新技术的准确性和效率。首次使用空间图像技术设计,制造和测试了梯形腔中的新型横向滤波器。

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