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Adaptive-FRESH Filters for Compensation of Cycle-Frequency Errors

机译:自适应FRESH滤波器,用于补偿周期频率误差

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This paper deals with the problem of uncertainties in the periodicities of linear almost-periodically time-variant (LAPTV) filters. These filters are usually implemented as a set of branches, each consisting of a frequency shifter followed by a linear time-invariant (LTI) filter. This implementation is also known as FRESH filters. This paper is motivated by the fact that, when there exist errors in the frequency shifts, the optimum set of LTI filters is obtained by canceling the outputs of the corresponding branches. The purpose of this paper is to analyze the nonstationary behavior of adaptive filters in order to mitigate this problem. Our results show that an adaptive filter can offset the errors in the frequency shifts. The reason is that the coefficients of the adaptive filter are updated so that the filter actually performs as a linear periodically time-variant filter for each branch. This allows to track the errors in the frequency shifts when the rate of convergence of the adaptive algorithm is suitably selected. An analytical study of the convergence is presented, which allows to compute the optimal rate of convergence and the mean squared-error attained by the adaptive filter.
机译:本文讨论了线性近似周期性时变(LAPTV)滤波器的周期不确定性问题。这些滤波器通常实现为一组分支,每个分支由一个移频器和一个线性时不变(LTI)滤波器组成。此实现也称为FRESH过滤器。本文的动机是,当频移中存在误差时,通过消除相应分支的输出可获得最佳LTI滤波器组。本文的目的是分析自适应滤波器的非平稳行为,以缓解这一问题。我们的结果表明,自适应滤波器可以补偿频移中的误差。原因是更新了自适应滤波器的系数,使得该滤波器实际上对每个分支起线性周期性时变滤波器的作用。当适当地选择自适应算法的收敛速率时,这允许跟踪频移中的误差。提出了对收敛性的分析研究,它可以计算出最优收敛速度和自适应滤波器获得的均方误差。

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