Title :
A perceptually enhanced Scalable-to-Lossless audio coding scheme and a trellis-based approach for its optimization
Author :
Ravelli, Emmanuel ; Melkote, Vinay ; Rose, Kenneth
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of California, Santa Barbara, CA, USA
Abstract :
Scalable-to-lossless (SLS) audio compression, as standardized by MPEG, provides a lossy base layer compatible with the advanced audio coding (AAC) format, ensuring state-of-the-art quality in the base layer, and additional fine grained enhancements that eventually provide a lossless compressed version of the signal. While SLS offers highly efficient lossless compression, the perceptual quality of its intermediate lossy layers has been observed to be suboptimal. This paper proposes a modified SLS audio coding scheme that provides enhanced perceptual quality at an intermediate bit-rate, at the expense of an additional parameter per frequency band as side-information. This scheme when coupled with a trellis-based optimization algorithm is demonstrated to outperform, in terms of quality at the intermediate bit-rate, both standard SLS and a recent perceptually enhanced variant, with minimal degradation in lossless coding performance.
Keywords :
audio coding; error statistics; optimisation; advanced audio coding format; audio compression; intermediate bit-rate; perceptually enhanced scalable-to-lossless audio coding scheme; trellis-based optimization algorithm; Application software; Audio coding; Conferences; Discrete cosine transforms; Discrete transforms; Encoding; Laser sintering; MPEG 4 Standard; Performance loss; Rate-distortion; Scalable audio coding; lossless audio coding; rate-distortion optimization; trellis;
Conference_Titel :
Applications of Signal Processing to Audio and Acoustics, 2009. WASPAA '09. IEEE Workshop on
Conference_Location :
New Paltz, NY
Print_ISBN :
978-1-4244-3678-1
Electronic_ISBN :
1931-1168
DOI :
10.1109/ASPAA.2009.5346480