A high signal integrity interconnect design using a genetic algorithm and its solution analysis: What solution did GA find in time and frequency domain?

Shumpei Matsuoka, M. Yasunaga
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引用次数: 2

Abstract

In the GHz domain, conventional printed circuit board (PCB) trace designs based on the matching of characteristic impedances do not work well for signal integrity (SI) improvement. In order to overcome this difficulty, we previously proposed a novel PCB trace structure, the segmental transmission line (STL), in which the trace design is optimized using genetic algorithms (GAs). In this paper, we apply the STL to the end-to-end transmission systems such as used in PCI-express, USB, SATA, and demonstrate its high effectiveness on the SI improvement by measured eye-diagrams on its prototype. Furthermore, we also measure s-parameters of the prototype and show what design solution the GA found.
使用遗传算法的高信号完整性互连设计及其解决方案分析:遗传算法在时域和频域找到了什么解决方案?
在GHz频段,传统的基于特征阻抗匹配的印制电路板(PCB)走线设计不能很好地改善信号完整性。为了克服这一困难,我们之前提出了一种新的PCB走线结构,分段传输线(STL),其中走线设计使用遗传算法(GAs)进行优化。本文将STL应用于PCI-express、USB、SATA等端到端传输系统中,并通过对其原型进行眼图测量,验证了其在SI改善方面的有效性。此外,我们还测量了原型的s参数,并展示了遗传算法找到的设计方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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