DocumentCode :
2893282
Title :
Minimization of quantization noise amplification in 2-channel IIR bi-orthogonal filter bank
Author :
Tripathi, Santosh Kumar ; Makur, Anamitra
Author_Institution :
Dept. of Electr. & Comput. Eng.,, Indian Inst. of Sci., Bangalore, India
Volume :
1
fYear :
2003
fDate :
15-18 Dec. 2003
Firstpage :
56
Abstract :
In this work we look at the class of uniform biorthogonal FIR, IIR and hybrid filter banks with M = 2 channels. When quantization noise passes through the synthesis filter bank, it gets amplified due to the multiplication of synthesis filter norms to the quantization noise in each channel. Better compression, or higher coding gain, can be achieved if the quantization noise amplification is reduced. Scaling down of the synthesis filters to maintain the property of perfect reconstruction does not work so the analysis of the filter bank needs to be scaled up. Minimization of such amplification has been proposed earlier for FIR filter banks. We are proposing an implementable and stable coloring filter for IIR filter bank which is the optimum coloring filter for the assumed filter structure. We deal with an example of a hybrid filter bank based on all pass delay chain structure.
Keywords :
FIR filters; IIR filters; all-pass filters; channel bank filters; quantisation (signal); signal denoising; 2-channel IIR biorthogonal filter bank; FIR filter banks; all-pass filters; coding gain; coloring filter; pass delay chain structure; quantization noise amplification; synthesis filter norms; Additive noise; Additive white noise; Colored noise; Delay; Filter bank; Finite impulse response filter; IIR filters; Noise figure; Noise shaping; Quantization;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Information, Communications and Signal Processing, 2003 and Fourth Pacific Rim Conference on Multimedia. Proceedings of the 2003 Joint Conference of the Fourth International Conference on
Print_ISBN :
0-7803-8185-8
Type :
conf
DOI :
10.1109/ICICS.2003.1292412
Filename :
1292412
Link To Document :
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