DocumentCode
2035789
Title
A methodology centered on modularization of QoS constraints for the development and performance evaluation of multimedia systems
Author
Fortino, Giancarlo ; Nigro, Libero
Author_Institution
Lab. di Ingegneria del Software, Calabria Univ., Italy
fYear
2000
fDate
2000
Firstpage
177
Lastpage
184
Abstract
This paper proposes a methodology for the development of multimedia systems. It is based on a time-sensitive, reflective actor framework that centers on light-weight actors, non-overkilling concurrent and customizable constraint-directed scheduling. A multimedia system can be visualized as a collection of media actors, i.e., autonomous, concurrent and computational processing entities, involved in multimedia sessions. QoS requirements associated to a multimedia session are incorporated in reflective actors called QoSsynchronizers that manage and enforce application-dependent QoS parameters. Timing QoS parameters are first specified by using Time Stream Petri Nets and then translated in terms of a QoSsychronizer. In order to support QoS constraints analysis and validation, media actors and QoSsynchronizers are prototyped under simulation by exploiting a flexibility of the adopted framework to operate transparently under virtual or real time. This a seamless transition from the modeling to the implementation stages can be obtained. The paper describes the use of the methodology for the development of live and on-demand multimedia applications
Keywords
Petri nets; multimedia systems; quality of service; real-time systems; scheduling; software performance evaluation; synchronisation; QoS constraints; QoSsynchronizers; Time Stream Petri Nets; customizable constraint-directed scheduling; lightweight actors; media actors; multimedia systems; non-overkilling scheduling; performance evaluation; quality of service constraints; real time system; reflective actor framework; timing; Application software; Computer networks; Concurrent computing; Delay; Electronic switching systems; Multimedia systems; Operating systems; Prototypes; Scattering parameters; Timing;
fLanguage
English
Publisher
ieee
Conference_Titel
Simulation Symposium, 2000. (SS 2000) Proceedings. 33rd Annual
Conference_Location
Washington, DC
ISSN
1080-241X
Print_ISBN
0-7695-0598-8
Type
conf
DOI
10.1109/SIMSYM.2000.844914
Filename
844914
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