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Projection-based approaches for model reduction of weakly nonlinear, time-varying systems

机译:基于投影的弱非线性时变系统模型简化方法

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The problem of automated macromodel generation is interesting from the viewpoint of system-level design because if small, accurate reduced-order models of system component blocks can be extracted, then much larger portions of a design, or more complicated systems, can be simulated or verified than if the analysis were to have to proceed at a detailed level. The prospect of generating the reduced model from a detailed analysis of component blocks is attractive because then the influence of second-order device effects or parasitic components on the overall system performance can be assessed. In this way overly conservative design specifications can be avoided. This paper reports on experiences with extending model reduction techniques to nonlinear systems of differential-algebraic equations, specifically, systems representative of RF circuit components. The discussion proceeds from linear time-varying, to weakly nonlinear, to nonlinear time-varying analysis, relying generally on perturbational techniques to handle deviations from the linear time-invariant case. The main intent is to explore which perturbational techniques work, which do not, and outline some problems that remain to be solved in developing robust, general nonlinear reduction methods.
机译:从系统级设计的角度来看,自动生成宏模型的问题很有趣,因为如果可以提取出系统组件块的小型,精确的降阶模型,则可以对设计的更大部分或更复杂的系统进行仿真或验证是否需要进行详细的分析。通过对组件块的详细分析来生成简化模型的前景很诱人,因为可以评估二阶设备效应或寄生组件对整体系统性能的影响。这样可以避免过于保守的设计规范。本文报告了将模型归约技术扩展到微分-代数方程的非线性系统(特别是代表RF电路组件的系统)的经验。讨论从线性时变,到弱非线性,再到非线性时变分析,通常依靠微扰技术来处理线性时不变情况下的偏差。主要目的是探讨哪种微扰技术有效,哪些无效,并概述了在开发鲁棒的通用非线性折减方法时仍需解决的一些问题。

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