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M3AT: Monitoring Agents Assignment Model for Data-Intensive Applications

机译:M3AT:数据密集型应用程序的监视代理分配模型

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Nowadays, massive amounts of data are acquired, transferred, and analyzed nearly in real-time by utilizing a large number of computing and storage elements interconnected through high-speed communication networks. However, one issue that still requires research effort is to enable efficient monitoring of applications and infrastructures of such complex systems. In this paper, we introduce an Integer Linear Programming (ILP) model called M3AT for optimized assignment of monitoring agents and aggregators on large-scale computing systems. We identified a set of requirements from three representative data-intensive applications and exploited them to define the model’s input parameters. We evaluated the scalability of M3AT using the Constraint Integer Programing (SCIP) solver with default configuration based on synthetic data sets. Preliminary results show that the model provides optimal assignments for subsystems composed of up to 200 monitoring agents with complex I/O policies, while keeping the number of aggregators constant and demonstrates variable sensitivity with respect to the scale of monitoring data aggregators and limitation policies imposed.
机译:如今,利用大量通过高速通信网络互连的计算和存储元件,几乎可以实时获取,传输和分析大量数据。但是,仍然需要研究工作的一个问题是能够有效监视这种复杂系统的应用程序和基础结构。在本文中,我们介绍了一种称为M3AT的整数线性规划(ILP)模型,用于在大型计算系统上优化监视代理程序和聚合器的分配。我们从三个具有代表性的数据密集型应用程序中确定了一组需求,并利用它们来定义模型的输入参数。我们使用约束整数编程(SCIP)求解器评估了M3AT的可伸缩性,该求解器具有基于合成数据集的默认配置。初步结果表明,该模型为由多达200个具有复杂I / O策略的监视代理程序组成的子系统提供了最佳分配,同时保持了聚合器的数量不变,并展示了对监视数据聚合器的规模和所施加的限制策略的可变敏感性。

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