DocumentCode :
1377952
Title :
Time-Invariant Context for Sample Rate Conversion Systems
Author :
Tassart, Stéphan
Author_Institution :
ST-Ericsson, Paris, France
Volume :
60
Issue :
3
fYear :
2012
fDate :
3/1/2012 12:00:00 AM
Firstpage :
1098
Lastpage :
1107
Abstract :
Digital systems dedicated to audio and speech processing usually require sample rate conversion units in order to adapt the sample rate from different signal flows: for instance 8 and 16 kHz for speech, 32 kHz for the broadcast rate, 44.1 kHz for CDs, and 48 kHz for studio work. The designer chooses the sample rate conversion (SRC) technology based on objective criteria, such as figures of complexity, development or integration cycle and of course performance characterization. The performances of the fractional SRC system include the in-band and the aliasing characterization plus its distortion behavior due to internal rounding errors. The paper shows the existence of a new compound time-invariant system made of multiple instances of the same SRC system. The characterization of the original SRC is obtained from the linear and distortion characteristics of this time-invariant system. Regular methods for characterizing time-invariant systems apply. The SRC system can be analyzed in black box conditions, either in batch processing or in real-time processing. Examples illustrate the capability of the method to fully recover characteristics and rounding noise behavior from actual SRC implementations.
Keywords :
signal processing; SRC system; audio-speech processing; black box condition; course performance characterization; frequency 16 kHz; frequency 32 kHz; frequency 44.1 kHz; frequency 48 kHz; frequency 8 kHz; internal rounding error; sample rate conversion system; signal flow; time-invariant context system; Compounds; Context; Delay; Equations; Mathematical model; Vectors; Zirconium; Additive noise; MIMO systems; digital filters; digital signal processing; nonlinear distortion; sampling methods;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/TSP.2011.2176336
Filename :
6082465
Link To Document :
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