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The robustness of resource allocation in parallel and distributed computing systems

机译:并行和分布式计算系统中资源分配的鲁棒性

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This paper gives an overview of the material to be discussed in the invited keynote presentation by H. J. Siegel. Performing computing and communication tasks on parallel and distributed systems involves the coordinated use of different types of machines, networks, interfaces, and other resources. Decisions about how best to allocate resources are often based on estimated values of task and system parameters, due to uncertainties in the system environment. An important research problem is the development of resource management strategies that can guarantee a particular system performance given such uncertainties. We have designed a methodology for deriving the degree of robustness of a resource allocation - the maximum amount of collective uncertainty in system parameters within which a user-specified level of system performance (QoS) can be guaranteed. Our four-step procedure for deriving a robustness metric for an arbitrary system will be presented. We will illustrate this procedure and its usefulness by deriving robustness metrics for some example distributed systems.
机译:本文概述了H. J. Siegel邀请的主题演示文稿中讨论的材料概述。在并行和分布式系统上执行计算和通信任务涉及协调不同类型的机器,网络,接口和其他资源的协调使用。关于如何最好地分配资源的决定通常基于估计的任务和系统参数值,由于系统环境中的不确定性。一个重要的研究问题是开发资源管理策略,可以保证特定的系统性能,给出这种不确定性。我们设计了一种用于导出资源分配的稳健性程度的方法 - 可以保证系统参数中的最大集体不确定性的数量,其中可以保证用户指定的系统性能(QoS)。我们将介绍我们的四步过程,用于导出任意系统的稳健性度量。我们将通过导出一些示例分布式系统的鲁棒性指标来说明此过程及其有用性。

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