Title :
A New Coding Mode for Hybrid Video Coders Based on Quantized Motion Vectors
Author :
Agostini-Vautard, Marie Andrée ; Cagnazzo, Marco ; Antonini, Marc ; Laroche, Guillaume ; Jung, Joël
Author_Institution :
Nony, Patent & Trademark Attorneys, Paris, France
fDate :
7/1/2011 12:00:00 AM
Abstract :
The rate allocation tradeoff between motion vectors and transform coefficients has a major importance when it comes to efficient video compression. This paper introduces a new coding mode for an H.264/AVC-like video coder, which improves the management of this resource allocation. The proposed technique can be used within any hybrid video encoder allowing a different coding mode for any macroblock. The key tool of the new mode is the lossy coding of motion vectors, obtained via quantization: while the transformed motion-compensated residual is computed with a high-precision motion vector, the motion vector itself is quantized before being sent to the decoder, in a rate/distortion optimized way. Several problems have to be faced with in order to get an efficient implementation of the coding mode, especially the coding and prediction of the quantized motion vectors, and the selection and encoding of the quantization steps. This new coding mode improves the performance of the hybrid video encoder over several sequences at different resolutions.
Keywords :
resource allocation; vector quantisation; video codecs; video coding; H.264/AVC-like video coder; coding mode; high-precision motion vector; hybrid video coders; motion-compensated residual; quantized motion vectors; resource allocation; video compression; Automatic voltage control; Cost function; Decoding; Encoding; Indexes; Quantization; Transforms; Motion vector; quantization; video coding;
Journal_Title :
Circuits and Systems for Video Technology, IEEE Transactions on
DOI :
10.1109/TCSVT.2011.2133590