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Modelling and controlling product manufacturing systems using bond-graphs and state equations: continuous systems and discrete systems which can be represented by continuous models

机译:使用键图和状态方程对产品制造系统进行建模和控制:连续系统和离散系统,可以用连续模型表示

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This paper presents an approach to the modelling and control phases involved in a cooperative process of design and management of the manufacturing systems. Modelling the evolution of the production flow, in the different sections of the system, is based upon the use of the bond-graph methodology in order to reach the state formalism which constitutes one of the modern representations of automation. The class of the systems studied ranges from continuous systems to discrete systems, which can be represented by a continuous approach according to the level of approximation required. The first part of this paper is dedicated to the development of generic models associated with the various basic entities of the manufacturing systems. Then, the bond-graph model of any system is obtained by assembling generic models in relation to the implementation of the means of the studied system, thus guaranteeing a representation which is quite close to the engineering sketches. Finally, switching to the state equation is performed systematically with the easiness provided by this formalism while taking into account the causality principle. An application, involving most of the elementary models developed, concludes the paper.
机译:本文提出了一种在制造系统的设计和管理的协作过程中所涉及的建模和控制阶段的方法。在系统的不同部分中,对生产流程的演化进行建模的基础是使用键合图方法,以达到构成自动化的现代表示形式之一的状态形式主义。研究的系统类别从连续系统到离散系统,可以根据所需的近似水平用连续方法表示。本文的第一部分致力于与制造系统的各种基本实体相关的通用模型的开发。然后,通过组合与研究系统的实现方式相关的通用模型来获得任何系统的键合图模型,从而保证了与工程草图非常接近的表示形式。最后,在考虑因果关系原理的情况下,使用这种形式主义提供的简便性,系统地执行状态方程的切换。本文总结了一个涉及大多数已开发的基本模型的应用程序。

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