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ATM Admission Models of Stochastic High Level Petri Nets Based on Hierarchical Modeling

机译:基于分层建模的随机高级Petri网ATM接纳模型

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This paper presents a framework for modeling and analyzing ATM admission control using Stochastic High Level Petri Net (SHLPN). SHLPN is chosen because it is a powerful graphical and mathematical modeling tool that is able to handle concurrent, asynchronous, nondeterministic and stochastic events. In addition, there exists a set of well-developed performance analysis techniques for SHLPN. This paper uses a hierarchical modeling technique to specify complex ATM network mechanisms using a top-down approach. However, in analyzing the performance of the network, a bottom-up approach is adopted. To tackle the state space explosion problem, a SHLPN model is decomposed into submodels. These subnets are independently evaluated with all possible population which are then substituted by transitions with approximate equivalent performance in the original model. The technique is illustrated by modeling and evaluating a specific connection admission control policy.
机译:本文提出了使用随机高级Petri网(SHLPN)建模和分析ATM准入控制的框架。之所以选择SHLPN,是因为它是功能强大的图形和数学建模工具,能够处理并发,异步,不确定性和随机事件。此外,还有一套针对SHLPN的完善的性能分析技术。本文使用一种分层建模技术,通过自上而下的方法来指定复杂的ATM网络机制。但是,在分析网络性能时,采用了自下而上的方法。为了解决状态空间爆炸问题,将SHLPN模型分解为子模型。这些子网通过所有可能的填充量进行独立评估,然后用原始模型中具有近似等效性能的过渡替换。通过建模和评估特定的连接允许控制策略来说明该技术。

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