Title :
Packet loss resisilent H.263+ compliant video coding
Author :
Le Leannec, Fabrice ; Guillemot, Christine
Author_Institution :
Inst. Nat. de Rech. en Inf. et en Autom., IRISA/INRIA Rennes, Rennes, France
Abstract :
This paper considers the problem of real-time point to point video transmission over the public Internet. A set of techniques in the direction of packet loss resilience of video compressed streams is presented. Aiming at a best trade-off between compression efficiency and packet loss resilience, a procedure for adapting the video coding modes and quantizer parameters to varying network characteristics is introduced. The network adaptive coding modes and quantizers selection is based on a rate-distortion procedure with global distortion metrics incorporating channel characteristics under the form of a packet loss model. The method has been implemented in a H.263+ software video encoder. As a second step, the coding mode selection strategy is refined by exploiting feedback information which consists in indicating lost video packets. We show that exploiting this knowledge of the channel state allows to significantly improve the robustness of H.263+ video streams in a packet loss prone environment.
Keywords :
adaptive codes; video coding; H.263+ compliant video coding; H.263+ software video encoder; coding mode selection strategy; global distortion metrics; lost video packets; network adaptive coding modes; packet loss resilience; public Internet; quantizers selection; rate-distortion procedure; real-time point to point video transmission; varying network characteristics; video compressed streams; Adaptation models; Encoding; Joints; Packet loss; Quantization (signal); Streaming media;
Conference_Titel :
Signal Processing Conference, 2000 10th European
Print_ISBN :
978-952-1504-43-3