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Towards the Performance Analysis of Elastic Systems with e-Motions

机译:带有电子运动的弹性系统的性能分析

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We use graph transformation to define an adaptive component model, what allows us to carry on predictive analysis of dynamic architectures through simulations. Specifically, we build on an e-Motions definition of the Palladio component model, and then specify adaptation mechanisms as generic adaptation rules. We show how the simulation-based analysis available in such a static definition can be extended in order to use the collected information on metrics such as response time, throughput and resource usage to adapt to the workload of the system and the environmental conditions. We illustrate our approach with rules modeling the scale in and out of servers, fired in response to the violation of specified constraints on the usage of resources. We evaluate this scenario by analyzing its performance, and discuss on its consequences in practice.
机译:我们使用图变换来定义自适应组件模型,这使我们能够通过仿真对动态体系结构进行预测分析。具体来说,我们基于Palladio组件模型的e-Motions定义,然后将适应机制指定为通用适应规则。我们展示了如何扩展在这种静态定义中可用的基于仿真的分析,以便将所收集的信息用于度量标准,例如响应时间,吞吐量和资源使用情况,以适应系统的工作负载和环境条件。我们通过对服务器内外规模建模的规则来说明我们的方法,这些规则是针对违反对资源使用的特定约束而触发的。我们通过分析其性能来评估此方案,并在实践中讨论其后果。

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