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Perturbation Analysis of Nonlinear Distortion in Analog Integrated Circuits

机译:模拟集成电路非线性失真的摄动分析

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A method for predicting the distortion in weakly nonlinear analog circuits is presented, which relies on the classical theory of regular perturbation. Accordingly, a nonlinear circuit is described and analyzed as a perturbation of its linearized model, and the response to a periodic signal is analytically calculated through frequency-domain recurrent formulas. The method is simple and quite straightforward to apply, as it involves the calculation of frequency-domain transfer functions and of Fourier coefficients only, making it easily adaptable to any circuit topology. The method can be a valid alternative to the Volterra series method. A relationship between the proposed method and the Volterra series method is established, showing that they lead to very similar approximants to the solution. The method has been numerically tested in practical circuits wherein the devices are modeled by polynomial and exponential nonlinearities.
机译:提出了一种基于经典的规则微扰理论的弱非线性模拟电路中的失真预测方法。因此,非线性电路作为线性模型的扰动被描述和分析,并通过频域递归公式对周期信号的响应进行分析计算。该方法简单易行,因为它只涉及频域传递函数和傅立叶系数的计算,因此很容易适应任何电路拓扑。该方法可以替代Volterra级数方法。建立了所提出的方法与Volterra级数方法之间的关系,表明它们导致与解决方案非常相似的近似值。该方法已在实际电路中进行了数值测试,其中器件通过多项式和指数非线性建模。

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