提高Q3D提取器高频仿真精度的分割方法研究

Chang Che, Huapeng Zhao, Yuandong Guo, Jun Hu, Hongseok Kim
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引用次数: 6

摘要

ANSYS Q3D Extractor是一个快速的准静态三维求解器,用于提取集总RLGC参数和SPICE模型。虽然Q3D Extractor比全波仿真更快,但它在高频仿真中会导致不准确性,特别是对于PCB结构。提出了一种利用分割技术提高高频仿真精度的方法。为了便于研究,在不牺牲通用性的前提下,选择PCB上的传输线作为待测器件,并以HFSS仿真结果和测量数据作为参考。通过大量的仿真来验证分割方法的有效性。研究发现,将传输线分割成一组电小段,可以有效地提高高频仿真精度。本文还介绍了使用Q3D的其他一些相关技巧。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of Segmentation Method for Enhancing High Frequency Simulation Accuracy of Q3D Extractor
ANSYS Q3D Extractor is a fast quasi-static 3D solver for extracting lumped RLGC parameters and SPICE models. Although Q3D Extractor is faster than full wave simulation, it results in inaccuracies at high frequency simulation, especially for PCB sructures. This paper proposes a method of improving the accuracy of high frequency simulations by using segmentation. For the convenience of study, a transmission line on PCB is selected as the device under test without sacrificing generality, and HFSS simulation results and measurement data are used as reference. Extensive simulations are performed to investigate the effectiveness of segmentation method. It is found that by dividing the transmission line into a set of electrically small segments, the high frequency simulation accuracy can be effectively enhanced. Some other relevant tips for using Q3D are also presented.
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