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Etude d'architectes de méta-ordonnancement pour le calcul en régime permanent et saturé

In this paper we present a model and simulator for many clusters of heterogeneous PCs belonging to a local network. These clusters are assumed to be connected to each other through a global network and each cluster is managed via a local scheduler which is shared by many users. We validate our simul...

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Detalles Bibliográficos
Autores principales: Caron, E, Garonne, V, Tsaregorodtsev, A Yu
Lenguaje:fre
Publicado: 2006
Materias:
Acceso en línea:http://cds.cern.ch/record/926187
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author Caron, E
Garonne, V
Tsaregorodtsev, A Yu
author_facet Caron, E
Garonne, V
Tsaregorodtsev, A Yu
author_sort Caron, E
collection CERN
description In this paper we present a model and simulator for many clusters of heterogeneous PCs belonging to a local network. These clusters are assumed to be connected to each other through a global network and each cluster is managed via a local scheduler which is shared by many users. We validate our simulator by comparing the experimental and analytical results of a M/M/4 queuing system. These studies indicate that the simulator is consistent. Next, we do the comparison with a real batch system and we obtain an average error of 10.5% for the response time and 12% for the makespan. We conclude that the simulator is realistic and well describes the behaviour of a large-scale system. Thus we can study the scheduling of our system called dirac in a high throughput context. We justify our decentralized, adaptive and opportunistic approach in comparison to a centralized approach in such a context.
id cern-926187
institution Organización Europea para la Investigación Nuclear
language fre
publishDate 2006
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spelling cern-9261872019-09-30T06:29:59Zhttp://cds.cern.ch/record/926187freCaron, EGaronne, VTsaregorodtsev, A YuEtude d'architectes de méta-ordonnancement pour le calcul en régime permanent et saturéDetectors and Experimental TechniquesIn this paper we present a model and simulator for many clusters of heterogeneous PCs belonging to a local network. These clusters are assumed to be connected to each other through a global network and each cluster is managed via a local scheduler which is shared by many users. We validate our simulator by comparing the experimental and analytical results of a M/M/4 queuing system. These studies indicate that the simulator is consistent. Next, we do the comparison with a real batch system and we obtain an average error of 10.5% for the response time and 12% for the makespan. We conclude that the simulator is realistic and well describes the behaviour of a large-scale system. Thus we can study the scheduling of our system called dirac in a high throughput context. We justify our decentralized, adaptive and opportunistic approach in comparison to a centralized approach in such a context.LHCb-2005-081CERN-LHCb-2005-081oai:cds.cern.ch:9261872006-02-02
spellingShingle Detectors and Experimental Techniques
Caron, E
Garonne, V
Tsaregorodtsev, A Yu
Etude d'architectes de méta-ordonnancement pour le calcul en régime permanent et saturé
title Etude d'architectes de méta-ordonnancement pour le calcul en régime permanent et saturé
title_full Etude d'architectes de méta-ordonnancement pour le calcul en régime permanent et saturé
title_fullStr Etude d'architectes de méta-ordonnancement pour le calcul en régime permanent et saturé
title_full_unstemmed Etude d'architectes de méta-ordonnancement pour le calcul en régime permanent et saturé
title_short Etude d'architectes de méta-ordonnancement pour le calcul en régime permanent et saturé
title_sort etude d'architectes de méta-ordonnancement pour le calcul en régime permanent et saturé
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/926187
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AT garonnev etudedarchitectesdemetaordonnancementpourlecalculenregimepermanentetsature
AT tsaregorodtsevayu etudedarchitectesdemetaordonnancementpourlecalculenregimepermanentetsature