首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >Automated Framework for Time-Domain Piecewise-Linear Fitting Method Based on Digital Wave Processing of S -Parameters
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Automated Framework for Time-Domain Piecewise-Linear Fitting Method Based on Digital Wave Processing of S -Parameters

机译:基于S-PARAMETER数字波处理的时域分段 - 线性拟合方法的自动框架

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摘要

An innovative full time-domain macromodeling technique for general, linear multiport systems is described. The methodology is defined in a digital wave framework and time-domain simulations are performed via an efficient method called Segment Fast Convolution (SFC). It is based on a piecewise-constant (PWC) model of the impulse response of scattering parameters, computed starting from a piecewise-linear fitting of their step response (PWLFIT). Such step response is directly available from time-domain reflectometer measurements (TDR/TDT) or equivalent simulations. The model-building phase is performed in a fast automated framework and an analytic formulation of computational efficiency of the SFC with respect to the standard time-domain convolution is given. Two application examples are used to verify the PWLFIT performance and to perform a comparison with macromodeling methods defined in the frequency-domain, such as Vector Fitting (VF).
机译:描述了一种创新的全时域Macromodeling技术,用于一般线性多端口系统。该方法在数字波框架中定义,通过称为段快卷积(SFC)的有效方法来执行时域模拟。它基于分段 - 常数(PWC)模型的散射参数的脉冲响应,从它们的步进响应(PWLFIT)的分段线性拟合开始。这种阶跃响应直接可从时域反射计测量(TDR / TDT)或等效模拟。在快速自动化框架中进行模型建设阶段,给出了SFC的计算效率的分析制剂,相对于标准时间域卷积。两个应用示例用于验证PWLFIT性能,并与频域中定义的Macromodeling方法进行比较,例如矢量拟合(VF)。

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