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Efficient design of sparse FIR filters with optimized filter length

机译:具有优化的滤波器长度的稀疏FIR滤波器的高效设计

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A large number of experiments have demonstrated that for an FIR filter the sparsity of filter coefficients is highly related to its filter order. However, traditional sparse FIR filter design methods focus on how to increase the number of zero-valued coefficients, but overlook the impact of filter orders on design performance. As an attempt to jointly optimize filter length and sparsity of an FIR filter, a novel method is proposed in this paper to design sparse linear-phase FIR filters. With peak error constraints, the objective function of the design problem is formulated as a combination of the sparsity of filter coefficients and a measure of the effective filter order. Then, the design problem is then recast as a weighted l0-norm optimization problem, which is solved by an efficient numerical method based on the iterative-reweighted-least-squares (IRLS) algorithms. Experimental results illustrate that the proposed method can efficiently reduce the effective filter order while enhancing the sparsity of an FIR filter.
机译:大量实验已经证明,对于FIR滤波器,滤波器系数的稀疏性与其过滤器顺序高度相关。但是,传统的稀疏FIR滤波器设计方法专注于如何增加零值系数的数量,但忽略了过滤器订单对设计性能的影响。作为共同优化FIR滤波器的过滤器长度和稀疏性的尝试,本文提出了一种新的方法,以设计稀疏的线性相位FIR滤波器。利用峰值误差约束,设计问题的目标函数被配制为滤波器系数的稀疏性和有效滤波器顺序的量度的组合。然后,设计问题作为加权L0-NOM优化问题重新循环,这通过基于迭代重量的最小二乘(IRLS)算法的有效数值方法来解决。实验结果说明了所提出的方法可以有效地减少有效的过滤器顺序,同时增强FIR滤波器的稀疏性。

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