异构资源环境中基于模型的自主和性能感知系统适应:一个案例研究

Nikolaus Huber, J. Walter, Manuel Bahr, Samuel Kounev
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引用次数: 10

摘要

云计算等最新趋势表明,服务提供商越来越多地采用具有更高资源效率和更低运营成本的现代自适应系统架构。在本文中,我们将基于整体模型的方法应用于工程性能感知系统的自适应。更具体地说,我们使用笛卡尔建模语言(DML),这是一种特定于领域的语言,用于对现代动态IT系统的性能行为和运行时适应过程进行建模。所进行的案例研究评估了我们的方法的适用性和有效性,并证明DML提供了合适的建模抽象,可以用作异构环境中自适应性能和资源管理的基础。我们采用基于整体模型的方法构建自适应系统,在Blue Yonder异构资源环境中自动保持性能需求和资源效率。DML的应用程序使服务基础结构能够自动适应异构环境中不断变化的客户工作负载和服务水平协议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Model-Based Autonomic and Performance-Aware System Adaptation in Heterogeneous Resource Environments: A Case Study
Recent trends like cloud computing show that service providers increasingly adopt to modern self-adaptive system architectures promising higher resource efficiency and lower operating costs. In this paper, we apply a holistic model-based approach to engineering performance-aware system adaptation. More specifically, we employ the Descartes Modeling Language (DML), a domain-specific language for modeling the performance behavior and run-time adaptation processes of modern dynamic IT systems. The conducted case study evaluates the applicability and effectiveness of our approach and demonstrates that DML provides suitable modeling abstractions that can be used as a basis for self-adaptive performance and resource management in heterogeneous environments. We apply a holistic model-based approach to build a self-adaptive system that automatically maintains performance requirements and resource efficiency in the heterogeneous resource environment of Blue Yonder. The application of DML enables to automatically adapt service infrastructures to changing customer workloads and service-level agreements in heterogeneous environments.
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