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A hybrid approach to nonlinear macromodel generation for time-varying analog circuits

机译:时变模拟电路非线性宏模型生成的混合方法

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Modeling frequency-dependent nonlinear characteristics of complex analog blocks and subsystems is critical for enabling efficient verification of mixed-signal system designs. Recent progress has been made for constructing such macromodels, however, their accuracy and/or efficiency can break down for certain problems, particularly those with high-Q filtering. In this paper we explore a novel hybrid approach for generating accurate analog macromodels for time-varying weakly nonlinear circuits. The combined benefits of nonlinear Pade approximations and pruning by exploitation of the system's internal structure allows us to construct nonlinear circuit models that are accurate for wide input frequency ranges, and thereby capable of modeling systems with sharp frequency selectivity. Such components are widely encountered in analog signal processing and RF applications. The efficacy of the proposed approach is demonstrated by the modeling of large time-varying nonlinear circuits that are commonly found in these application areas.
机译:对复杂的模拟模块和子系统的频率相关的非线性特性进行建模,对于有效验证混合信号系统设计至关重要。在构建这样的宏模型方面已经取得了最新进展,但是,对于某些问题,尤其是那些具有高Q滤波的问题,其准确性和/或效率可能会下降。在本文中,我们探索了一种新颖的混合方法,可为时变的弱非线性电路生成精确的模拟宏模型。非线性Pade逼近和通过利用系统内部结构进行修剪的综合优势使我们能够构建对宽输入频率范围均准确的非线性电路模型,从而能够对具有明显频率选择性的系统进行建模。此类组件在模拟信号处理和RF应用中广泛遇到。大型时变非线性电路的建模证明了所提方法的有效性,这些非线性电路通常出现在这些应用领域。

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