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Numerical evaluation of the Green's functions for arbitrarily shaped cylindrical enclosures and their optimization by a new spatial images method

机译:新型圆柱图像的格林函数Green函数的数值评估及其优化

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In this paper, a spatial image technique is used to efficiently calculate the mixed potential Green's functions associated with electric sources, when they are placed inside arbitrarily shaped cylindrical cavities. The technique is based on placing electric dipole images and charges outside the cavity region. Their strength and orientation are then calculated by imposing the appropriate boundary conditions for the fields at discrete points on the metallic wall. A method for the assessment of the potentials accuracy is proposed, and several optimization techniques are presented. Three cavities are analyzed to demonstrate the usefulness of the techniques. The cutoff frequencies and potentials patterns are compared to those obtained by a standard finite elements technique, showing excellent agreement. Finally, a band-pass filter based on coupled lines is analyzed, demonstrating the practical value of the technique.
机译:在本文中,使用空间图像技术可有效地计算将电源放置在任意形状的圆柱腔内时与电源相关的混合电势格林函数。该技术基于将电偶极子图像和电荷放置在腔体区域之外。然后通过在金属壁上的离散点处施加适当的边界条件来计算其强度和方向。提出了一种评估电位精度的方法,并提出了几种优化技术。分析了三个腔体以证明该技术的实用性。将截止频率和电势模式与通过标准有限元技术获得的截止频率和电势模式进行了比较,显示出极好的一致性。最后,对基于耦合线的带通滤波器进行了分析,证明了该技术的实用价值。

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