On Utility Driven Deployment in a Distributed Environment

D. Deb, M. Oudshoorn
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引用次数: 5

Abstract

By harnessing the computational power of distributed heterogeneous resources, it is possible to build a large scale integrated system so that a centralized program is partitioned and distributed across those resources in a way that maximizes the system's overall utility. However, building such a system is a staggering challenge because of the associated complexities. This paper proposes a self-managing distributed system ADE, that incorporates autonomic entities to handle the complexities associated with distribution, coordination and efficient execution of program components. The proposed approach models a centralized application in terms of an application graph consisting application components and then deploys the application components across the underlying hierarchically organized distributed resources so that all constraints and requirements are satisfied and the system's overall utility is maximized. Then, based on the observations obtained by the monitoring of the system resources, ADE redeploys the application graph to maintain maximized system utilization in spite of the dynamism and uncertainty involved in the system
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分布式环境中的实用程序驱动部署
通过利用分布式异构资源的计算能力,可以构建大规模的集成系统,以便以最大化系统整体效用的方式在这些资源上划分和分布集中的程序。然而,由于相关的复杂性,构建这样一个系统是一个惊人的挑战。本文提出了一种自管理分布式系统ADE,该系统结合了自治实体来处理与程序组件的分布、协调和有效执行相关的复杂性。建议的方法根据包含应用程序组件的应用程序图对集中式应用程序建模,然后跨底层分层组织的分布式资源部署应用程序组件,以便满足所有约束和需求,并最大化系统的总体效用。然后,基于对系统资源的监控所获得的观察结果,ADE重新部署应用图,以在系统存在动态性和不确定性的情况下保持最大的系统利用率
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