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Behavioral modeling for analog system-level simulation by wavelet collocation method

机译:基于小波配置法的模拟系统级仿真行为建模

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In this paper, we propose a wavelet collocation method with nonlinear companding to generate behavioral models for analog circuits at the system level. During the overall process of circuit modeling, nonlinear function approximation is an important issue to accurately capture the nonideal input-output relations of analog circuit blocks. While a great number of previous research works focus on the high-dimensional top-down design/synthesis model, which involves large analog design spaces, this paper primarily concentrates on the bottom-up verification model requiring both simple representation and high accuracy. Taking advantage of the local support of wavelet bases, a nonlinear companding method is developed to control the modeling error distribution based on system-level simulation requirements. It, in turn, significantly improves the simulation efficiency at the system level. To demonstrate the promising features of the proposed method, two circuit examples, a fourth-order switched-current filter and a voltage-controlled oscillator, are employed to build the behavioral models.
机译:在本文中,我们提出了一种具有非线性压扩的小波配置方法,以在系统级生成模拟电路的行为模型。在电路建模的整个过程中,非线性函数逼近是准确捕获模拟电路块的非理想输入输出关系的重要问题。尽管先前的大量研究工作都集中在涉及大型模拟设计空间的高维自上而下的设计/综合模型,但本文主要集中于自下而上的验证模型,该模型既需要简单表示又需要高精度。利用小波基的局部支持,基于系统级仿真需求,开发了一种非线性压扩方法来控制建模误差的分布。反过来,它极大地提高了系统级别的仿真效率。为了证明所提出方法的有前途的特征,采用两个电路实例,一个四阶开关电流滤波器和一个压控振荡器,来建立行为模型。

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