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Relational modeling of chemical processes for control logic verification

机译:控制逻辑验证化学过程的关系模型

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The area of formal methods offers improved fault detection for hybrid processes, such as chemical ones. Verification of a chemical process requires the construction of a finite state representation from the phenomena exhibited by the control system, physical process, operating procedures, and human behavior. The exhibited phenomena are modeled as a set of states, the transitions between these states, and their triggering events. In particular, the states and transitions are based upon landmarks and their relative position while the triggering events are based upon the actions in the system. This methodology capitalizes on the importance of relational properties instead of absolute ones in verifying a chemical process. The proposed methodology was applied to two industrial examples: a leak test procedure and a thermal oxidation process.
机译:正式方法的领域为混合过程提供了改进的故障检测,例如化学品。化学过程的验证需要从控制系统,物理过程,操作程序和人类行为所展示的现象构建有限状态表示。展出的现象被建模为一组状态,这些状态之间的过渡以及它们的触发事件。特别地,状态和转换基于地标及其相对位置,而触发事件基于系统中的动作。该方法大写了关系属性的重要性而不是验证化学过程时的关系属性。所提出的方法应用于两个工业实例:泄漏测试程序和热氧化过程。

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