DocumentCode :
642675
Title :
Efficient multistage implementation of rational sampling rate converter
Author :
Takahashi, Naoyuki ; Takago, Daisuke ; Matsumura, Syo ; Takebe, Takanori
Author_Institution :
Tokai Univ., Tokai, Japan
fYear :
2013
fDate :
8-12 Sept. 2013
Firstpage :
1
Lastpage :
4
Abstract :
In Digital audio processing, there are multiple standard sampling rates, for example, 48kHz for studio work, 44.1kHz for compact disk(CD) mastering. Therefore, sampling rate conversion is needed to interchange signals from one field to another. A rational sampling rate conversion by L/M can be done cascading an L-fold up-sampler and an M-fold down-sampler with a linear phase FIR lowpass filter in the middle. When both L and M have large values, the lowpass filters are required to have an extremely narrow normalized bandwidth and a sharp transition characteristic, causing difficulty in design and implementation. This paper describes a technique to overcome this difficulty for the case both L and M are composite numbers, giving an multistage converter structure where each stage is consisting of an up-sampler and a down-sampler, both of a small conversion ratios, with a filter having not so sharp normalized transition characteristic in the middle, remarkably reduced total computation complexity.
Keywords :
FIR filters; audio discs; audio signal processing; computational complexity; low-pass filters; L-fold up-sampler; M-fold down-sampler; compact disk mastering; computation complexity; digital audio processing; linear phase FIR low-pass filter; multistage implementation; rational sampling rate converter; Bandwidth; Finite impulse response filters; Frequency conversion; Information filters; Maximum likelihood detection; Nonlinear filters; composite number; multirate signal processing; rational sampling rate converter; sampling rate conversion;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Circuit Theory and Design (ECCTD), 2013 European Conference on
Conference_Location :
Dresden
Type :
conf
DOI :
10.1109/ECCTD.2013.6662226
Filename :
6662226
Link To Document :
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