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首页> 外文期刊>IEEE Transactions on Circuits and Systems. II >Hybrid Newton/Gauss-Newton algorithm for time-domain analysis of A/D converters
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Hybrid Newton/Gauss-Newton algorithm for time-domain analysis of A/D converters

机译:牛顿/高斯-牛顿混合算法用于A / D转换器的时域分析

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This brief describes a maximum-likelihood estimator for a sum of harmonically related sinewaves for characterizing analog-to-digital (A/D) converters. The frequency is estimated by means of the Newton method. For the iterations where singularity problems occur, the algorithm switches to the Gauss-Newton method combined with the singular value decomposition. The initial frequency accuracy required by this algorithm is determined and the algorithm is modified in order to converge to the global minimum, whatever the initial frequency uncertainty. Thus, one can use the frequencies of the signal generators to provide the starting value. Once the frequency is determined, the linear parameters of the model are estimated by solving a linear set of equations. It is shown through simulation and experimental results that the proposed algorithm is fast, accurate, and robust, with respect to the initial guess of the frequency.
机译:本简介描述了用于表征模数(A / D)转换器的谐波相关正弦波之和的最大似然估计器。该频率通过牛顿法估算。对于出现奇点问题的迭代,算法将切换到结合奇异值分解的高斯-牛顿法。确定该算法所需的初始频率精度,并对算法进行修改,以收敛到全局最小值,而不管初始频率不确定性如何。因此,可以使用信号发生器的频率来提供起始值。确定频率后,可通过求解线性方程组来估计模型的线性参数。通过仿真和实验结果表明,相对于频率的初始猜测,该算法是快速,准确和鲁棒的。

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