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A new approach to design triplet halfband filter banks based on balanced-uncertainty optimization

机译:基于平衡度不确定度优化的三重半带滤波器组设计新方法

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摘要

This paper presents a novel approach to design a class of triplet halfband filter banks (THFB) based on optimized time-frequency localization. First, an Euler-Frobenius polynomial (EFP) is introduced to design a class of halfband polynomial. The vanishing moments and perfect reconstruction conditions are imposed on EFP to obtain maximally flat halfband filter. The resultant halfband filter is optimized using a balanced-uncertainty (BU) metric in order to have balance between time and frequency spread. Next, this optimized halfband filter is used in three-step lifting scheme to obtain analysis and synthesis wavelet filters which have balance between time and frequency localization. The proposed method provides three degrees of freedom that results in flexible design of filter bank. It is observed that the proposed filter bank gives more regularity and better frequency selectivity as compared to existing filter banks. These designed filters are then used for human chromosome image compression application. The performance of the designed filter bank is compared in terms of PSNR using different bit-rates with well-known existing filter banks in order to validate the experimental results. (C) 2016 Elsevier Inc. All rights reserved.
机译:本文提出了一种基于优化的时频定位设计一类三重半带滤波器组(THFB)的新颖方法。首先,引入Euler-Frobenius多项式(EFP)来设计一类半带多项式。消失的力矩和完美的重构条件被施加到EFP上,以获得最大平坦的半带滤波器。使用平衡不确定度(BU)度量优化所得的半带滤波器,以便在时间和频率扩展之间取得平衡。接下来,在三步提升方案中使用此优化的半带滤波器,以获得在时间和频率定位之间保持平衡的分析和合成小波滤波器。所提出的方法提供了三个自由度,从而导致了滤波器组的灵活设计。可以看出,与现有的滤波器组相比,提出的滤波器组具有更多的规律性和更好的频率选择性。这些设计的滤镜随后用于人类染色体图像压缩应用。将设计的滤波器组的性能根据PSNR(使用不同的比特率)与已知的现有滤波器组进行比较,以验证实验结果。 (C)2016 Elsevier Inc.保留所有权利。

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