Title :
Error resilience technique for multi-view coding using redundant disparity vectors
Author :
Dissanayake, M.B. ; De Silva, D.V.S.X. ; Worrall, S.T. ; Fernando, W.A.C.
Author_Institution :
Fac. of Eng. & Phys. Sci., Univ. of Surrey, Guildford, UK
Abstract :
Research on error resilience in multi-view coding is currently receiving considerable interest. While there is a multitude of literature concerning error recovery in 2D video, due to the statistical difference in motion compensation among temporal frames and disparity compensation among view points, such methods are inadequate to cater to the requirements of multiview video transmission. This paper addresses the above issue by transmission of redundant disparity vectors for error recovery purposes. The proposed system, which is implemented using the Joint Scalable Video Model (JSVM) codec and tested using a simulated Internet Protocol (IP) packet network environment, can be used along with a suitable error concealment scheme to provide robust multi-view video transmission. The experimental results suggest that the proposed algorithm experiences a slight degradation of quality in error free environments due to the inclusion of redundant data. However, it improves the reconstructed picture quality significantly in error prone environments, specifically for Packet Loss Rates (PLRs) greater than 7%.
Keywords :
IP networks; image reconstruction; motion compensation; protocols; statistical analysis; vectors; video codecs; video coding; 2D video; IP packet network environment; JSVM codec; disparity compensation; error concealment scheme; error free environments; error recovery purposes; error resilience technique; joint scalable video model codec; literature concerning error recovery; motion compensation; multiview coding; packet loss rates; reconstructed picture quality; redundant data; redundant disparity vectors; robust multiview video transmission; simulated Internet protocol packet network; statistical difference; temporal frames; Codecs; Decoding; Encoding; PSNR; Propagation losses; Resilience; Video coding; Multi-view coding; error resilience; redundant coding;
Conference_Titel :
Multimedia and Expo (ICME), 2010 IEEE International Conference on
Conference_Location :
Suntec City
Print_ISBN :
978-1-4244-7491-2
DOI :
10.1109/ICME.2010.5583188