DocumentCode :
180122
Title :
Transform-domain decorrelation in Dolby Digital Plus
Author :
Melkote, Vinay ; Kuan-Chieh Yen ; Fellers, Matt ; Davidson, Glenn ; Kumar, Vipin
Author_Institution :
Dolby Labs., Inc., San Francisco, CA, USA
fYear :
2014
fDate :
4-9 May 2014
Firstpage :
6949
Lastpage :
6953
Abstract :
The Dolby Digital Plus (DDPlus) multichannel audio codec employs channel coupling for parsimonious transmission of high frequency components of the signal, wherein the transform coefficients of discrete channels beyond a coupling-begin frequency are transmitted as a mono-downmix. The decoder reconstructs individual channels by appropriate panning with frequency-banded gains. While channel coupling is a valuable parametric coding tool for low bit-rate encoding of multichannel audio, the resulting high inter-channel coherence can affect audio post-processors that utilize downmixing, such as headphone virtualizers. To mitigate these effects, a new low-complexity spatial audio coding tool is proposed, whose primary objective is to restore phase diversity in the decoder´s output. In this new approach, a decorrelation signal is synthesized directly from the decoded real-valued and critically-sampled transform (MDCT) coefficients, avoiding the expense of computing the imaginary counterpart (MDST) or signal transformation to a different domain (such as QMF). The decorrelation signal is then adaptively mixed with the dry signal and inverse-transformed as in a conventional decoder. The degree of mixing depends on spatial parameters that are either sent in the bitstream or estimated in the decoder from the discrete (not coupled) low-frequency spectral coefficients. Listening tests demonstrate the significant performance benefits obtained in either mode of operation of the proposed tool.
Keywords :
adaptive signal processing; audio coding; channel coding; decorrelation; discrete cosine transforms; inverse transforms; signal reconstruction; signal sampling; spectral analysis; DDPlus decoder; Dolby digital plus; MDCT; adaptive mixing; audio postprocessor; bit rate encoding; channel coupling; channel reconstruction; critically sampled transform; decorrelation signal synthesis; discrete channel; discrete low frequency spectral coefficients; frequency banded gain; interchannel coherence; inverse transform; modified discrete cosine transform; mono downmixing; multichannel audio codec; parametric coding tool; parsimonious signal high frequency components transmission; signal transformation; spatial audio coding tool; spatial parameter; transform domain decorrelation; Codecs; Couplings; Decoding; Decorrelation; Encoding; Transforms; Transient analysis; MDCT; audio coding; channel coupling; decorrelation; spatial coding;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Acoustics, Speech and Signal Processing (ICASSP), 2014 IEEE International Conference on
Conference_Location :
Florence
Type :
conf
DOI :
10.1109/ICASSP.2014.6854947
Filename :
6854947
Link To Document :
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