Stammdaten

Titel: Simplified Workflow Simulation on Clouds based on Computation and Communication Noisiness
Untertitel:
Kurzfassung:

Many researchers rely on simulations to analyze and validate their researched methods on Cloud infrastructures. However, determining relevant simulation parameters and correctly instantiating them to match the real Cloud performance is a difficult and costly operation, as minor configuration changes can easily generate an unreliable inaccurate simulation result. Using legacy values experimentally determined by other researchers can reduce the configuration costs, but is still inaccurate as the underlying public Clouds and the number of active tenants are highly different and dynamic in time. To overcome these deficiencies, we propose a novel model that simulates the dynamic Cloud performance by introducing noise in the computation and communication tasks, determined by a small set of runtime execution data. Although the estimating method is apparently costly, a comprehensive sensitivity analysis shows that the configuration parameters determined for a certain simulation setup can be used for other simulations too, thereby reducing the tuning cost by up to 82.46%, while declining the simulation accuracy by only 1.98% in average. Extensive evaluation also shows that our novel model outperforms other state-of-the-art dynamic Cloud simulation models, leading up to 22% lower makespan inaccuracy.

Schlagworte: Cloud computing, simulation, workflow applications, burstable instances, performance instability and noisiness
Publikationstyp: Beitrag in Zeitschrift (Autorenschaft)
Erscheinungsdatum: 21.01.2020 (Print)
Erschienen in: IEEE Transactions on Parallel and Distributed Systems (TPDS)
IEEE Transactions on Parallel and Distributed Systems (TPDS)
zur Publikation
 ( IEEE; )
Titel der Serie: -
Bandnummer: 31
Heftnummer: 7
Erstveröffentlichung: Ja
Version: -
Seite: S. 1559 - 1574

Versionen

Keine Version vorhanden
Erscheinungsdatum:
ISBN (e-book): -
eISSN: -
DOI: http://dx.doi.org/10.1109/TPDS.2020.2967662
Homepage: -
Open Access
  • Online verfügbar (Open Access)
Erscheinungsdatum: 21.01.2020
ISBN: -
ISSN: 1045-9219
Homepage: https://ieeexplore.ieee.org/document/8964294/

Zuordnung

Organisation Adresse
Fakultät für Technische Wissenschaften
 
Institut für Informationstechnologie
Universitaetsstr. 65-67
9020 Klagenfurt am Wörthersee
Österreich
   martina.steinbacher@aau.at
http://itec.aau.at/
zur Organisation
Universitaetsstr. 65-67
AT - 9020  Klagenfurt am Wörthersee

Kategorisierung

Sachgebiete
  • 1020 - Informatik
Forschungscluster Kein Forschungscluster ausgewählt
Zitationsindex
  • Science Citation Index Expanded (SCI Expanded)
Informationen zum Zitationsindex: Master Journal List
Peer Reviewed
  • Ja
Publikationsfokus
  • Science to Science (Qualitätsindikator: I)
Klassifikationsraster der zugeordneten Organisationseinheiten:
Arbeitsgruppen
  • Distributed Multimedia Systems

Kooperationen

Organisation Adresse
Universität Innsbruck
Innrain 52
6020 Innsbruck
Österreich - Tirol
https://www.uibk.ac.at/index.html.de
Innrain 52
AT - 6020  Innsbruck

Beiträge der Publikation

Keine verknüpften Publikationen vorhanden