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A BDD-Based Approach for Modeling Plant and Supervisor by Extended Finite Automata

机译:扩展有限自动机基于BDD的工厂和主管建模方法

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In this paper, we settle some problems that are encountered when modeling and synthesizing complex industrial systems by the supervisory control theory. First, modeling such huge systems with explicit state-transition models typically results in an intractable model. An alternative modeling approach is to use extended finite automata (EFAs), which is an augmentation of ordinary automata with variables. The main advantage of utilizing EFAs for modeling is that more compact models are obtained. The second problem concerns the ease to understand and implement the supervisor. To handle this problem, we represent the supervisor in a modular manner by extending the original EFAs by compact conditional expressions. This will provide a framework for the users where they can both model their system and obtain the supervisor in form of EFAs. In order to be able to handle complex systems efficiently, the models are symbolically represented by binary decision diagrams (BDDs). All computations that are performed in this framework are based on BDD operations. The framework has been implemented in a supervisory control tool and applied to industrially relevant benchmark problems.
机译:在本文中,我们解决了使用监督控制理论对复杂的工业系统进行建模和综合时遇到的一些问题。首先,使用显式状态转换模型对如此庞大的系统进行建模通常会导致难以处理的模型。另一种建模方法是使用扩展的有限自动机(EFA),它是普通自动机的可变变量。利用EFA进行建模的主要优点是可以获得更紧凑的模型。第二个问题涉及易于理解和实施主管的问题。为了解决这个问题,我们通过紧凑的条件表达式扩展原始EFA,以模块化的方式表示主管。这将为用户提供一个框架,使他们既可以对系统建模也可以以EFA形式获得主管。为了能够有效地处理复杂的系统,模型由二进制决策图(BDD)象征性地表示。在此框架中执行的所有计算均基于BDD操作。该框架已在监督控制工具中实施,并已应用于与行业相关的基准问题。

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