DocumentCode :
824498
Title :
Fine-grained device management in an interactive media server
Author :
Rangaswami, Raju ; Dimitrijevic, Zoran ; Chang, Edward ; Chan, Shueng-Han Gary
Author_Institution :
Dept. of Comput. Sci., Univ. of California, Santa Barbara, CA, USA
Volume :
5
Issue :
4
fYear :
2003
Firstpage :
558
Lastpage :
569
Abstract :
The use of interactive media has already gained considerable popularity. Interactivity gives viewers VCR controls like slow-motion, pause, fast-forward, and instant replay. However, traditional server-based or client-based approaches for supporting interactivity either consume too much network bandwidth or require large client buffering; and hence they are economically unattractive. We propose the architecture and design of an interactive media proxy (IMP) server that transforms noninteractive broadcast or multicast streams into interactive ones for servicing a large number of end users. For IMP to work cost-effectively, it must carefully manage its storage devices, which are needed for caching voluminous media data. In this regard, we propose a fine-grained device management strategy consisting of three complementary components: disk profiler, data placement, and IO scheduler. Through quantitative analysis and experiments, we show that these fine-grained strategies considerably improve device throughput under various workload scenarios.
Keywords :
cache storage; disc storage; interactive systems; multicast communication; multimedia systems; scheduling; video on demand; I/O scheduler; I/O scheduling; IMP; VCR controls; client-based approaches; data placement; disk profiler; fine-grained device management; fine-grained device management strategy; interactive media proxy server; interactive media server; interactivity; media server; multicast streams; network bandwidth; noninteractive broadcast streams; quantitative analysis; server-based approaches; video-on-demand; voluminous media data caching; Bandwidth; Computer science; Interactive systems; Network servers; Streaming media; TV broadcasting; Throughput; Video on demand; Video recording; Web server;
fLanguage :
English
Journal_Title :
Multimedia, IEEE Transactions on
Publisher :
ieee
ISSN :
1520-9210
Type :
jour
DOI :
10.1109/TMM.2003.814722
Filename :
1244813
Link To Document :
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