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Extracting analytical nonlinear models from analog circuits by recursive vector fitting of Transfer Function Trajectories

机译:通过传递函数轨迹的递归矢量拟合从模拟电路中提取解析非线性模型

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This paper presents a technique for automatically extracting analytical behavioral models from the netlist of a nonlinear analog circuit. Subsequent snapshots of the internal circuit Jacobian are sampled during time-domain analysis and are then processed into Transfer Function Trajectories (TFT). The TFT data project the nonlinear dynamics of the system onto a hyperplane in the mixed state-space/frequency domain. Next Recursive Vector Fitting (RVF) algorithm is used to extract an analytical Hammerstein model out of the TFT data in an automated fashion. The resulting RVF model equations are implemented as an accurate nonlinear behavioral model in the time domain. The model is guaranteed stable by construction and can trade off complexity for accuracy. The technique is validated on a high-speed analog buffer circuit containing 70 linear and nonlinear components, showing a 7X speedup.
机译:本文提出了一种从非线性模拟电路网表中自动提取分析行为模型的技术。内部电路雅可比行列的后续快照在时域分析期间进行采样,然后处理为传递函数轨迹(TFT)。 TFT数据将系统的非线性动力学投影到混合状态空间/频域中的超平面上。下一个递归向量拟合(RVF)算法用于以自动方式从TFT数据中提取解析Hammerstein模型。所得的RVF模型方程式在时域中实现为精确的非线性行为模型。该模型通过构造保证是稳定的,并且可以在精度方面进行权衡。该技术在包含70个线性和非线性元件的高速模拟缓冲电路上得到验证,显示出7倍的加速。

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