基于多类排队网络模型的UML软件体系结构的性能评估

S. Balsamo, M. Marzolla
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引用次数: 66

摘要

基于性能模型的软件性能可以应用于软件开发周期的早期阶段,以表征软件系统的定量行为。我们提出了一种基于排队网络模型的方法,用于软件体系结构级别的软件系统的性能预测,由UML指定。从带注释的UML用例、活动和部署图开始,我们推导出基于多链和多类排队网络(QN)的性能模型。UML模型是根据可调度性、性能和时间规范的UML概要文件进行注释的。提出的算法将带注释的UML规范转换为QN性能模型,然后可以使用标准解决方案技术对其进行分析。性能结果在UML图中的软件架构级别上报告回来。由于我们的方法可以完全自动化并使用标准UML注释,因此它可以与其他性能建模方法集成。具体来说,我们讨论了如何将这种基于量子网络的方法与现有的基于仿真的性能建模工具集成在一起。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance evaluation of UML software architectures with multiclass Queueing Network models
Software performance based on performance models can be applied at early phases of the software development cycle to characterize the quantitative behavior of software systems. We propose an approach based on queueing networks models for performance prediction of software systems at the software architecture level, specified by UML. Starting from annotated UML Use Case, Activity and Deployment diagrams we derive a performance models based on multichain and multiclass Queueing Networks (QN). The UML model is annotated according to the UML Profile for Schedulability, Performance and Time Specification. The proposed algorithm translates the annotated UML specification into QN performance models, which can then be analyzed using standard solution techniques. Performance results are reported back at the software architecture level in the UML diagrams. As our approach can be fully automated and uses standard UML annotations, it can be integrated with other performance modeling approaches. Specifically, we discuss how this QN-based approach can be integrated with an existing simulation-based performance modeling tool.
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