DocumentCode
1057551
Title
Path diversity for enhanced media streaming
Author
Apostolopoulos, John G. ; Trott, Mitchell D.
Author_Institution
Hewlett-Packard Labs., Palo Alto, CA, USA
Volume
42
Issue
8
fYear
2004
Firstpage
80
Lastpage
87
Abstract
Media streaming over best effort packet networks such as the Internet is quite challenging because of the dynamic and unpredictable available bandwidth, loss rate, and delay. Recently, streaming over multiple paths to provide path diversity has emerged as an approach to help overcome these problems. This article provides an overview of the benefits and use of path diversity for media streaming. The different approaches to media coding and streaming over multiple paths are examined, together with architectures for achieving path diversity between single or multiple senders and a single receiver. Important examples include using the distributed servers in a content delivery network to provide path diversity to a requesting client, using multiple 802.11 wireless access points to provide path diversity to a mobile client, and using relays to provide low-latency media communication. The design, analysis, and operation of media streaming systems that use path diversity are considered, with emphasis on the accurate performance models needed to select the best paths or best servers.
Keywords
Internet; diversity reception; mobile communication; packet radio networks; telecommunication network routing; wireless LAN; IEEE 802.11 wireless infrastructure; Internet; best effort packet network; content delivery network; distributed server; low-latency media communication; media coding; media streaming systems; multiple 802.11 wireless access point; path diversity; relay; source routing; Asynchronous transfer mode; Bandwidth; Decoding; Delay; Internet; Legged locomotion; Loss measurement; Relays; Streaming media; Wireless communication;
fLanguage
English
Journal_Title
Communications Magazine, IEEE
Publisher
ieee
ISSN
0163-6804
Type
jour
DOI
10.1109/MCOM.2004.1321395
Filename
1321395
Link To Document