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A Unified Approach to the Design of Interpolated and Frequency-Response-Masking FIR Filters

机译:内插和频响屏蔽FIR滤波器设计的统一方法

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We present a unified approach to the design of two well-known classes of computationally efficient digital filters, namely the interpolated and frequency-response-masking (FRM) FIR filters, that are optimized in minimax sense. The highly nonconvex minimax designs of these filters are carried out by jointly optimizing the subfilters involved using a convex-concave procedure (CCP) that yields an iterative and converging process where each iteration involves a convex problem of minimizing a linear function subject to convex quadratic constraints. We present an analysis to explain why CCP is well-suited for the design problems at hand. We also show that the CCP-based design framework is flexible to allow extension to the design of FRM filters that simultaneously promotes sparsity of the filter coefficients to reduce implementation complexity. Design examples with comparisons are presented to demonstrate the performance of the proposed design methods.
机译:我们提出了一种统一的方法来设计两类众所周知的计算效率高的数字滤波器,即内插和频率响应屏蔽(FRM)FIR滤波器,它们在minimax方面进行了优化。这些滤波器的高度非凸极小极大值设计是通过使用凸凹过程(CCP)共同优化所涉及的子滤波器来进行的,该过程产生了迭代和收敛过程,其中每次迭代都涉及一个凸问题,该问题最小化受凸二次约束约束的线性函数。我们提供一个分析来解释为什么CCP非常适合当前的设计问题。我们还表明,基于CCP的设计框架具有灵活性,可以扩展FRM滤波器的设计,同时提高滤波器系数的稀疏性,从而降低实现复杂性。给出了带有比较的设计实例,以证明所提出的设计方法的性能。

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