A colored Petri net-based formal method for the design of control systems

M. Makungu, R. St.-Denis, M. Barbeau
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Abstract

Several formal methods model reactive systems as discrete-event systems (DES). This makes mathematical reasoning about their properties easier and controller synthesis possible. We investigate the forbidden state control problem in which a DES is represented as a colored Petri net with a symmetry specification. More specifically, we provide an efficient formal method for synthesizing a controller which, when combined with the original system, will avoid reaching forbidden states. This problem is decidable if the colored Petri net has finite color sets and bounded places. Unlike conventional methods that explore the entire reachable set of states, our method avoids an exhaustive search of the state space by exploiting a symmetry specification. Furthermore, this abstraction technique allows a compact representation for the controller. Therefore, our method performs particularly well when applied to large but structured processes with similar components.
基于彩色Petri网的控制系统形式化设计方法
有几种形式化方法将反应系统建模为离散事件系统(DES)。这使得对其性质的数学推理更容易,控制器合成也成为可能。我们研究了将DES表示为具有对称规范的彩色Petri网的禁止状态控制问题。更具体地说,我们提供了一种有效的形式化方法来合成控制器,当与原始系统结合时,将避免达到禁止状态。当有色Petri网具有有限的颜色集和有界的位置时,这个问题是可判定的。与探索整个可达状态集的传统方法不同,我们的方法通过利用对称规范避免了对状态空间的详尽搜索。此外,这种抽象技术允许对控制器进行紧凑的表示。因此,当应用于具有类似组件的大型但结构化的过程时,我们的方法执行得特别好。
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