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Supervisory Control of DES With Extended Finite-State Machines and Variable Abstraction

机译:具有扩展有限状态机和变量抽象的DES监督控制

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This paper deals with two relevant aspects of Supervisory Control Theory (SCT) of Discrete Event Systems: the difficulty faced to model specifications to be fulfilled by the system under control, and the computational cost to synthesize supervisors. These aspects are addressed by Extended Finite-state Machines (EFSMs), a version of ordinary finite-state machines, extended with variables. EFSMs have been used in SCT to facilitate modeling tasks, but they are not directly advantageous in synthesis. This paper shows that some variables can nevertheless be abstracted from an EFSM to compute a supervisor. The proposed approach has the modeling benefits of EFSMs while preserving controllability and least restrictiveness of control solutions, and the synthesis procedure can be conducted with computational gains. An algorithm to compute supervisors from abstractions is also proposed. A way to construct abstractions that always lead to optimal synthesis complements the contributions, which are illustrated by two examples of manufacturing systems.
机译:本文讨论了离散事件系统的监督控制理论(SCT)的两个相关方面:受控制系统要满足的模型规格所面临的困难,以及综合监督员的计算成本。这些方面可以通过扩展有限状态机(EFSM)来解决,这是普通有限状态机的一种版本,并通过变量进行了扩展。 EFSM已用于SCT中以简化建模任务,但在合成中并不直接有利。本文表明,尽管如此,仍可以从EFSM中提取一些变量来计算主管。所提出的方法具有EFSMs的建模优势,同时保留了控制解决方案的可控制性和最小限制,并且合成过程可以通过计算获得。还提出了一种从抽象计算主管的算法。构造总是导致最佳综合的抽象的方法补充了这些贡献,这在制造系统的两个示例中得到了说明。

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