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Hierarchical time-extended Petri nets (H-EPNs) based error identification and recovery for multilevel systems

机译:基于分层时间扩展Petri网(H-EPN)的多级系统错误识别和恢复

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In this paper, hierarchical time-extended Petri nets (H-EPNs), an extended Petri net based modeling and analysis tool, are used to derive the coordination level model of hierarchically decomposable systems, viewed from a three-level hierarchical structure of organization, coordination and execution of tasks. A two-layer (vertical) coordination level framework, consisting of the dispatcher/analyzer and the H-EPN controller is presented. A detailed two sub-level (horizontal) H-EPN controller model is derived to model system operations (including system soft failures). Error classification based on the interaction between the various system coordinators is derived from the H-EPN model. The H-EPN approach preserves multi-resolutional system details as well as effective communication flows between the various subsystems. A simple example illustrates the proposed approach. The important H-EPN properties of boundedness, safeness and reversibility are verified.
机译:本文使用分层时间扩展Petri网(H-EPN)(一种基于扩展Petri网的建模和分析工具),从组织的三级分层结构来看,推导了分层可分解系统的协调级别模型,协调和执行任务。提出了一个由调度程序/分析器和H-EPN控制器组成的两层(垂直)协调级别框架。导出了详细的两个子级别(水平)H-EPN控制器模型,以对系统操作(包括系统软故障)进行建模。基于各种系统协调器之间交互作用的错误分类是从H-EPN模型得出的。 H-EPN方法保留了多分辨率系统的详细信息以及各个子系统之间的有效通信流。一个简单的例子说明了所提出的方法。验证了H-EPN重要的有界性,安全性和可逆性。

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