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Combination of a Discrete Event Simulation and an Analytical Performance Analysis through Model-Transformations

机译:通过模型转换将离散事件仿真与分析性能分析相结合

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This paper presents a method for the complementation of a discrete event simulation with an analytical performance prediction approach to improve performance related decision support for business processes. This is enabled by the transformation of non-hierarchical tool independent performance models into hierarchical models of the analytical approach FMC-QE (Fundamental Modeling Concepts for Quantitative Evaluation), through a series of graph transformations. The method employs the so called Model-Driven Performance Engineering (MDPE) architecture. This architecture permits generation of input for different kinds of performance analysis tools, such as tools for discrete event simulations, via ``pushing-a-button''. While FMC-QE delivers a time efficient analytical performance evaluation mechanism with approximations for non-product form problems, discrete event simulations support models with arbitrary complex control flow structures at the cost of longer execution times. Therefore, we propose to employ the analytical approach for a sensitivity analysis, combined with simulations for detailed what-if questions and process optimizations. This approach is evaluated based on an industrial case study.
机译:本文提出了一种使用分析性能预测方法对离散事件仿真进行补充的方法,以改善与业务流程相关的性能决策支持。通过一系列图形转换,可以将非分层工具独立的性能模型转换为分析方法FMC-QE(定量评估的基本建模概念)的分层模型。该方法采用了所谓的模型驱动性能工程(MDPE)架构。这种架构允许通过``按一下按钮''为各种性能分析工具(例如用于离散事件模拟的工具)生成输入。尽管FMC-QE提供了一种具有时间效率的分析性能评估机制,可以近似地解决非产品形式的问题,但离散事件模拟以任意复杂的控制流结构支持模型,但执行时间更长。因此,我们建议采用分析方法进行敏感性分析,并结合模拟进行详细的假设分析和工艺优化。该方法是基于工业案例研究进行评估的。

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