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首页> 外文期刊>IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems >Full-wave analysis of high-speed interconnects using complex frequency hopping
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Full-wave analysis of high-speed interconnects using complex frequency hopping

机译:使用复杂跳频的高速互连全波分析

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Accurate simulation of large interconnect networks has become a necessity to address signal-integrity issues in current high-speed very-large-scale-integration designs. To accurately characterize a dispersive system of interconnects at higher frequencies, a full-wave analysis is required. However, conventional circuit simulation of interconnects with full-wave models is extremely CPU expensive. Recently published moment-matching techniques provide a generalized approach to lumped/distributed circuit response approximations. However, these techniques are based on quasi-transverse electromagnetic mode (TEM) assumption and have no mechanism to handle full-wave models. In this paper, we present a new method to extend model-reduction techniques for simulation of full-wave models. The following three new results are presented in this paper: 1) a generalized method to combine modal results from a full-wave analysis into circuit simulators; 2) a new algorithm for moment generation involving full-wave models; 3) deviations associated with quasi-TEM approximations compared to full-wave models at higher frequencies. The proposed algorithm yields a speed up of 1 to 2 orders of magnitude for a comparable accuracy with conventional techniques. In addition, the proposed method can be used for a mixed simulation involving distributed models with frequency dependent/independent RLCG parameters, full-wave interconnect models and measured subnetworks along with nonlinear terminations.
机译:大型互连网络的精确仿真已成为解决当前高速超大规模集成设计中信号完整性问题的必要条件。为了准确地表征较高频率下互连的色散系统,需要进行全波分析。但是,具有全波模型的互连的常规电路仿真非常昂贵。最近发布的矩匹配技术为集总/分布式电路响应近似提供了一种通用方法。但是,这些技术是基于准横向电磁模式(TEM)的假设,并且没有处理全波模型的机制。在本文中,我们提出了一种扩展模型简化技术以模拟全波模型的新方法。本文介绍了以下三个新结果:1)一种将全波分析的模态结果组合到电路仿真器中的通用方法; 2)一种涉及全波模型的矩生成新算法; 3)在较高频率下,与全波模型相比,与准TEM近似值相关的偏差。所提出的算法可将速度提高1到2个数量级,以实现与传统技术相当的精度。此外,所提出的方法可用于混合仿真,包括具有频率依赖/独立的RLCG参数的分布式模型,全波互连模型和测得的子网以及非线性终端。

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