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Efficiency of the Perturbative Stochastic Galerkin Method for Multiple Differential PCB Lines

机译:多微分PCB线路摄动随机Galerkin方法的效率

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This paper investigates the efficiency of a perturbative approach for the statistical assessment of differential transmission lines affected by random parameters. Within the polynomial chaos framework, the novel technique reformulates the so-called stochastic Galerkin method in a decoupled and iterative fashion. Instead of solving the classical, augmented and fully coupled transmission line equations, the new approach iteratively solves multiple uncoupled line equations with nominal per-unit-length parameters and suitable equivalent distributed sources accounting for their variability. The methodology is applied to a system of up to four PCB differential pairs. A computational advantage is observed against the classical stochastic Galerkin method for large problems in terms of number of random parameters and/or conductors.
机译:本文研究了一种扰动方法对受随机参数影响的差分传输线进行统计评估的效率。在多项式混沌框架内,新技术以解耦和迭代的方式重新构造了所谓的随机Galerkin方法。代替求解经典的,增强的和完全耦合的传输线方程,该新方法迭代地求解了多个解耦线方程,这些方程具有标称的每单位长度参数,并考虑了其可变性,使用了适当的等效分布源。该方法适用于多达四个PCB差分对的系统。在随机参数和/或导体数量方面,对于大型问题,相对于经典的随机Galerkin方法,在计算上有优势。

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