边界积分法计算任意形状多层PDN的高效直流和交流阻抗

Ling Zhang;Jack Juang;Zurab Kiguradze;Bo Pu;Shuai Jin;Songping Wu;Zhiping Yang;Er-Ping Li;Jun Fan;Chulsoon Hwang
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引用次数: 9

摘要

本文提出了一种基于边界积分的有效方法来计算任意形状和多层印刷电路板(PCB)的配电网(PDN)的直流和交流阻抗。该方法采用边界元法提取任意平行平面形状的电感。随后,使用节点电压法求解由通孔电感和平面电容形成的等效电路。通过合并并联和串联电感并简化等效电路,可以显著减少大量过孔和层的计算时间。这种矩阵操作策略可以应用于各种PCB结构,而无需人工干预或商业电路求解器。此外,还采用轮廓积分法计算了任意形状和多层PDN的直流电阻。因此,通过一维边界积分可以有效地计算从直流到交流频率的宽带PDN阻抗,这可以比全波模拟更快地执行。所提出的方法可以帮助开发用于PDN设计的电子设计自动化工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient DC and AC Impedance Calculation for Arbitrary-Shape and Multilayer PDN Using Boundary Integration
This article presents an efficient methodology based on boundary integration to calculate the dc and ac impedance of power distribution networks (PDNs) for arbitrary-shape and multilayer printed circuit boards (PCBs). The proposed method adopts a boundary element method to extract inductances for the arbitrary parallel-plane shapes. Subsequently, the equivalent circuit formed by the via inductances and plane capacitances is solved using the node voltage method. By merging the parallel and serial inductances and simplifying the equivalent circuit, the computation time can be significantly reduced for a large number of vias and layers. This matrix manipulation strategy can be applied to various PCB structures without human intervention or commercial circuit solvers. Moreover, a contour integral method is employed to calculate the dc resistances for arbitrary shape and multilayer PDNs. Therefore, the wideband PDN impedance from dc to ac frequencies can be efficiently calculated through 1-D boundary integration, which can be performed more quickly than full-wave simulations. The proposed method can aid in the development of electronic design automation tools for PDN design.
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