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A multifrequency technique for frequency response computation with application to switched-capacitor circuits with nonlinearities

机译:一种用于频率响应计算的多频技术及其在非线性开关电容电路中的应用

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摘要

Frequency domain analysis of switched-capacitor and other clocked circuits including nonlinearities is a difficult problem requiring special attention. Conventional nonlinear frequency response methods are computationally intensive and time consuming for circuits with large transient components. In this paper, we present a novel technique for the rapid estimation of the nonlinear frequency response of switched-capacitor circuits. The analysis technique is formulated using a multifrequency sinusoidal excitation to drive the circuit into its steady-state condition. Then, the fundamental components are extracted using a frequency-directed Discrete Fourier Transform (DFT) in order to construct the frequency response. The key steps of this approach include the selection of noninterfering input frequencies and the determination of properly scaled input amplitudes. In addition, a method is proposed to reach steady-state quickly and to detect the steady-state condition for use in conjunction with the multifrequency approach described here.
机译:包括非线性在内的开关电容器和其他时钟电路的频域分析是一个难题,需要特别注意。对于具有较大瞬态分量的电路,常规的非线性频率响应方法在计算上比较费时。在本文中,我们提出了一种用于快速估算开关电容器电路非线性频率响应的新技术。分析技术是使用多频正弦激励公式制定的,以将电路驱动到稳态状态。然后,使用频率定向离散傅里叶变换(DFT)提取基本成分,以构建频率响应。这种方法的关键步骤包括选择无干扰的输入频率和确定适当缩放的输入幅度。另外,提出了一种方法,该方法可以快速达到稳态并检测稳态条件,以与本文所述的多频方法结合使用。

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