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Coupling timed plant and controller models with urgent transitions without introducing deadlocks

机译:将定时工厂和控制器模型与紧急过渡耦合,而不会引入死锁

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This paper focuses on timed models which represent closed-loop systems composed of a plant and a logic controller. Both the plant and controller models are described in a formalism where urgent transitions are possible, to avoid non-realistic evolutions, and without deadlock when they are separated. It is first shown that deadlocks may occur in the plant model as soon as both models are coupled. To solve this issue, shared variables which model the changes of the inputs of the controller are defined and introduced in some actions of the plant model as well as in some guards of the controller model; the aim of these variables is to authorize evolutions of the controller only when at least one input has changed. This solution removes the previously pinpointed deadlocks and guarantees the reactivity of the controller.
机译:本文着重于定时模型,这些模型代表了由工厂和逻辑控制器组成的闭环系统。工厂模型和控制器模型都以形式主义描述,可以进行紧急过渡,以避免非现实的演变,并且当它们分离时不会出现死锁。首先表明,一旦两个模型耦合,死锁就会在工厂模型中发生。为了解决这个问题,在工厂模型的某些动作以及控制器模型的某些防护措施中,定义并引入了对控制器输入的变化建模的共享变量。这些变量的目的是仅在至少一个输入发生更改时才授权控制器的发展。该解决方案消除了以前确定的死锁,并保证了控制器的反应性。

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