用于多级和多形式化建模的集成框架

W. Sanders
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引用次数: 52

摘要

在指定和解决旨在预测计算机系统和网络的性能和可靠性的模型的方法方面已经取得了重大进展。然而,与此同时,必须评估其性能和可靠性的系统的复杂性急剧增加,使用性能/可靠性评估工具的分析人员的期望也有相当大的增加。本文简要回顾了性能/可靠性评估工具的发展进展,并认为下一个重要步骤是创建建模框架和软件环境,以支持在单个集成框架内多级、多形式化建模和多种解决方案方法。此外,本文还概述了Mobius项目,该项目旨在提供一个支持多种建模形式化的建模框架和软件环境,模型组成和连接的方法,以及集成多种基于分析/数值和仿真的模型解决方法的方法。最后,它提出了必须进行的研究,以实现这一目标,从而促进复杂计算机系统和网络的性能和可靠性评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrated frameworks for multi-level and multi-formalism modeling
There have been significant advances in methods for specifying and solving models that aim to predict the performance and dependability of computer systems and networks. At the same time, however, there have been dramatic increases in the complexity of the systems whose performance and dependability must be evaluated, and considerable increases in the expectations of analysts that use performance/dependability evaluation tools. This paper briefly reviews the progress that has been made in the development of performance/dependability evaluation tools, and argues that the next important step is the creation of modeling frameworks and software environments that support multi-level, multi-formalism modeling and multiple solution methods within a single integrated framework. In addition, this paper presents an overview of the Mobius project, which aims to provide a modeling framework and software environment that support multiple modeling formalisms, methods for model composition and connection, and a way to integrate multiple analytical/numerical- and simulation-based model solution methods. Finally, it suggests research that must take place to make this aim a reality, and thus facilitate the performance and dependability evaluation of complex computer systems and networks.
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