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首页> 外文期刊>IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences >Performance Evaluation Of Workflows Using Continuous Petri Nets With Interval Firing Speeds
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Performance Evaluation Of Workflows Using Continuous Petri Nets With Interval Firing Speeds

机译:使用具有间隔射击速度的连续Petri网评估工作流的性能

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In this paper, we study performance evaluation of workflow-based information systems. Because of state space explosion, analysis by stochastic models, such as stochastic Petri nets and queuing models, is not suitable for workflow systems in which a large number of flow instances run concurrently. We use fluid-flow approximation technique to overcome this difficulty. In the proposed method, GSPN (Generalized Stochastic Petri Nets) models representing workflows are approximated by a class of timed continuous Petri nets, called routing timed continuous Petri nets (RTCPN). In RTCPN models, each discrete set is approximated by a continuous region on a real-valued vector space, and variance in probability distribution is replaced with a real-valued interval. Next we derive piecewise linear systems from RTCPN models, and use interval methods to compute guaranteed enclosures for state variables. As a case study, we solve an optimal resource assignment problem for a paper review process.
机译:在本文中,我们研究了基于工作流的信息系统的性能评估。由于状态空间爆炸,通过随机模型(例如,随机Petri网和排队模型)进行的分析不适用于同时运行大量流实例的工作流系统。我们使用流体近似技术来克服这一困难。在所提出的方法中,代表工作流的GSPN(广义随机Petri网)模型由一类定时连续Petri网(称为路由定时连续Petri网(RTCPN))近似。在RTCPN模型中,每个离散集都由实值向量空间上的连续区域近似,并且概率分布中的方差被实值间隔替换。接下来,我们从RTCPN模型导出分段线性系统,并使用区间方法来计算状态变量的有保证的包围数。作为案例研究,我们解决了论文审查过程中的最佳资源分配问题。

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