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Application of Artificial Neural Networks to Statistical Analysis and Nonlinear Modeling of High-Speed Interconnect Systems

机译:人工神经网络在高速互联系统统计分析和非线性建模中的应用

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In designing robust high-speed interconnect systems, the effects of parameter variations on system performance must be studied using statistical analyses. These analyses require repetitive circuit simulations to account for the randomness in parameter values caused by manufacturing and environmental changes. An accurate modeling technique is also essential for capturing the nonlinear relationships between channel parameters and performance. In this paper, the application of artificial neural networks to accurately capture the nonlinear mappings between parameters and performance to speed up the analysis of high-speed interconnect systems is described. An efficient set of data that uses a few simulations or experiments based on orthogonal arrays is proposed to train the neural network. The neural network can then serve to accurately and efficiently generate performance distributions. The usefulness and accuracy of the proposed approach is verified using an extreme data rate memory system that operates at a data rate of 3.2 Gb/s. The histograms and descriptive statistics of the eye height and timing jitter are compared with those obtained from traditional Monte Carlo, regression model, and worst case analyses
机译:在设计强大的高速互连系统时,必须使用统计分析来研究参数变化对系统性能的影响。这些分析需要重复的电路仿真,以解决由制造和环境变化引起的参数值的随机性。准确的建模技术对于捕获通道参数和性能之间的非线性关系也至关重要。本文介绍了人工神经网络在准确捕获参数与性能之间的非线性映射以加快高速互连系统分析速度方面的应用。提出了一种有效的数据集,该数据集使用了一些基于正交数组的仿真或实验来训练神经网络。然后,神经网络可以用来准确有效地生成性能分布。使用以3.2 Gb / s的数据速率运行的极限数据速率存储系统验证了所提出方法的有用性和准确性。将眼图高度和时序抖动的直方图和描述性统计数据与从传统蒙特卡洛,回归模型和最坏情况分析获得的图像进行比较

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