Title :
An efficient low complexity encoder for MPEG advanced audio coding
Author :
Hu, Xiaopeng ; He, Guiming ; Zhou, Xiaoping
Author_Institution :
Sch. of Comput., Wuhan Univ.
Abstract :
MPEG advanced audio coding (AAC) is the current state of the art in perceptual audio coding technology standardized by MPEG. Nevertheless the real-time constraint of reference software implementation for the AAC encoder provided by MPEG leads to a heavy computational bottleneck on today´s portable devices. In this paper we review briefly the algorithms specified in the MPEG AAC standard and analyze the algorithmic performance. Then we carry out algorithm level optimizations in order to get a low complexity as well as high quality audio encoder that can be easily ported onto multiple platforms. In psychoacoustic model, a MDCT-based psychoacoustic analysis and block switching algorithm in time domain and a tonality detection measure are presented. Moreover, we employ improved pre-processing and adjustment of scale factor in quantization module. Experimental results show the optimized encoder can save about half of overall computational complexity. According to subject evaluation result, the perceptual audio quality of improved encoder is better than the AAC LC reference encoder
Keywords :
audio coding; computational complexity; quantisation (signal); time-domain analysis; AAC LC reference encoder; MDCT-based psychoacoustic analysis; MPEG advanced audio coding; algorithm level optimizations; block switching algorithm; computational bottleneck; computational complexity; efficient low complexity encoder; optimized encoder; perceptual audio coding technology; perceptual audio quality; portable devices; psychoacoustic model; quantization module; real-time constraint; reference software implementation; time domain; tonality detection measure; Algorithm design and analysis; Audio coding; Computational complexity; Performance analysis; Portable computers; Psychoacoustic models; Psychology; Quantization; Time domain analysis; Time measurement; AAC; Audio coding; Low complexity; Psychoacoustic model;
Conference_Titel :
Advanced Communication Technology, 2006. ICACT 2006. The 8th International Conference
Conference_Location :
Phoenix Park
Print_ISBN :
89-5519-129-4
DOI :
10.1109/ICACT.2006.206269