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Near-Perfect Reconstruction Oversampled Nonuniform Cosine-Modulated Filter Banks Based on Frequency Warping and Subband Merging

机译:基于频率扭曲和子带合并的近完美重构过采样非均匀余弦调制滤波器组

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摘要

A novel method for designing near-perfect reconstruction oversampled nonuniform cosine-modulated filter banks is proposed, which combines frequency warping and subband merging, and thus offers more flexibility than known techniques. On the one hand, desirable frequency partitionings can be better approximated. On the other hand, at the price of only a small loss in partitioning accuracy, both warping strength and number of channels before merging can be adjusted so as to minimize the computational complexity of a system. In particular, the coefficient of the function behind warping can be constrained to be a negative integer power of two, so that multiplications related to allpass filtering can be replaced with more efficient binary shifts. The main idea is accompanied by some contributions to the theory of warped filter banks. Namely, group delay equalization is thoroughly investigated, and it is shown how to avoid significant aliasing by channel oversampling. Our research revolves around filter banks for perceptual processing of sound, which are required to approximate the psychoacoustic scales well and need not guarantee perfect reconstruction.
机译:提出了一种设计近乎完美的重构过采样非均匀余弦调制滤波器组的新方法,该方法结合了频率扭曲和子带合并,因此比已知技术具有更大的灵活性。一方面,可以更好地近似期望的频率划分。另一方面,以仅损失很小的分割精度为代价,可以调整合并之前的弯曲强度和通道数,以使系统的计算复杂度最小。特别地,可以将翘曲后面的函数的系数限制为2的负整数次方,以便可以用更有效的二进制移位代替与全通滤波相关的乘法。主要思想伴随着对翘曲滤波器组理论的一些贡献。即,彻底研究了群时延均衡,并说明了如何避免信道过采样引起的明显混叠。我们的研究围绕用于声音的感知处理的滤波器组,这是很好地近似心理声学尺度所必需的,并且不必保证完美的重建。

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