Title :
Efficient residual prediction with error concealment in extended spatial scalability
Author :
Shoaib, Muhammad ; Cai, Anni
Author_Institution :
Multimedia Commun. Center, Beijing Univ. of Posts & Telecommun., Beijing, China
Abstract :
In this paper, inter-layer residual prediction´s trade-off between concealing lost macroblock (MB) and removing visual artifact in extended spatial scalability (ESS) is investigated. In order to improve visual artifacts, various schemes are proposed in the literature, including higher distortion to the residual prediction used in ESS enhancement layer for non matching residuals. Whereas, residual prediction is also used to conceal lost MBs in inter-layer error concealment methods. We propose an efficient use of residual prediction to prevent those artifacts as well as to conceal lost MBs, exploiting features in homogenous characteristics in video objects for error resilient coding. Simulation results show that the proposed scheme achieves up to 0.29 dB PSNR gain, with overall average of 0.1 dB PSNR gain at the decoder for various tested sequences compared to JVT-W123 under testing conditions specified in JVT-V302.
Keywords :
video coding; ESS enhancement layer; JVT-V302; JVT-W123; error concealment; error resilient coding; extended spatial scalability; inter-layer residual prediction trade-off; lost macroblock concealing; non matching residuals; scalable video coding; visual artifacts; Electronic switching systems; Gain; Image resolution; Multimedia communication; PSNR; Scalability; Spatial resolution; Static VAr compensators; Testing; Video coding; Extended spatial scalability; error resilient coding; inter layer residual prediction; scalable video coding;
Conference_Titel :
Wireless Telecommunications Symposium (WTS), 2010
Conference_Location :
Tampa, FL
Print_ISBN :
978-1-4244-6558-3
DOI :
10.1109/WTS.2010.5479647