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Large and small signal distortion analysis using modified Volterra series

机译:使用改进的Volterra系列的大小信号失真分析

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摘要

A new approach to the Volterra analysis of analog circuits is presented. Volterra analysis is widely used for the calculation of harmonic and intermodulation distortion products. However, the analysis is limited to circuits experiencing small signal excitations and becomes inaccurate when the input signal amplitude increases, especially when MOS transistors are involved. In this paper, we analyze the cause of this drawback, which is no other than the Taylor series' convergence properties. Moreover, we propose a solution, by calculating the non-linearity coefficients using a different type of polynomial expansion, the Chebyshev series. This replacement improves significantly the capabilities of Volterra analysis. We also present results comparing Chebyshev series with other types of polynomial expansions. Finally, we apply the proposed method to analyze the intermodulation distortion (IMD) of a CMOS RF power amplifier, both in the small and the large signal regimes.
机译:提出了一种模拟电路的Volterra分析新方法。 Volterra分析被广泛用于谐波和互调失真产物的计算。但是,分析仅限于遇到小信号激励的电路,并且当输入信号幅度增加时,尤其是在涉及MOS晶体管时,分析变得不准确。在本文中,我们分析了造成这种缺陷的原因,这就是泰勒级数的收敛性质。此外,我们提出了一种解决方案,方法是使用另一种类型的多项式展开式Chebyshev级数来计算非线性系数。这种替代大大提高了Volterra分析的功能。我们还提供了将Chebyshev级数与其他类型的多项式展开式进行比较的结果。最后,我们将所提出的方法用于分析CMOS射频功率放大器在小信号和大信号情况下的互调失真(IMD)。

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