Title :
A peer-to-peer video-on-demand system using multiple description coding and server diversity
Author :
Xu, Xiaofeng ; Wang, Yao ; Panwar, Shivendra S. ; Ross, Keith W.
Author_Institution :
Polytechnic Univ., Brooklyn, NY, USA
Abstract :
We propose a video streaming system that uses many ordinary computers (peers) as servers, which is less costly and more scalable than using a single or a few dedicated servers. To circumvent frequent peer disconnects and limited peer up-link bandwidth, each video is coded into multiple descriptions, which are distributed over multiple peers. The system serves a client request by streaming multiple descriptions of the requested video from separate peers. Using the MD-FEC coding scheme, and simple models for peer disconnects, reconnects and for searching replacement serving peers after a peer disconnect, we simulated video streaming in such a system. Our results show significant benefits in using a large number of descriptions and serving peers.
Keywords :
forward error correction; peer-to-peer computing; video coding; video on demand; video servers; video streaming; MD-FEC coding scheme; forward error correction; multiple description coding; peer up-link bandwidth; peer-to-peer video-on-demand system; video coding; video streaming system; Bandwidth; Computer architecture; Computer network reliability; Computer networks; Costs; Delay; Network servers; Peer to peer computing; Streaming media; Video compression;
Conference_Titel :
Image Processing, 2004. ICIP '04. 2004 International Conference on
Print_ISBN :
0-7803-8554-3
DOI :
10.1109/ICIP.2004.1421414