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A New Approach to Modeling Manufacturing System: Dynamic Control Cell Structure

机译:建模制造系统的一种新方法:动态控制单元结构

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To help modern manufacturing systems meet the immediate demands of control and function, dynamic control cell structure is proposed based on automata and RW theory. This control structure not only can meet these demands but also can achieve the fast dynamic reorganization. The control structure is used to construct a complicated system from the bottom-up by definite rules which ensure its controlled characteristics. This avoids the difficulties of characteristics analysis from the top-down and forms a set of ways to construct the man-made complicated system. The paper discusses a finite state machine model and supervisory proof of the dynamic control cell structure followed by the extending of the structure. Finally, the tile manufacturing process is used as a hybrid system prototype to realize successfully not only the high-level supervisor of the discrete events dynamic system, but also the real-time supervisor of the running states of the floor equipment by MATLAB software. The feasibility of the new theoretical approach is verified by the simulation results.
机译:为了帮助现代制造系统满足控制和功能的即时需求,动态控制细胞结构是基于自动机理论RW建议。这种控制结构不仅能满足这些需求,而且还可以实现快速动态重组。所述控制结构用于通过确保其控制特性明确的规则来构造从底向上一个复杂的系统。这避免了特征分析,从自上而下和形式的一套方法来构建人造复杂系统的困难。本文讨论的有限状态机模型和动态控制单元结构,接着该结构的延伸的监督证明。最后,瓷砖生产过程中使用的混合动力系统样机,实现成功不仅是离散事件的高层主管动力系统,而且通过MATLAB软件的底层设备的运行状态的实时监控器。新的理论方法的可行性由模拟结果验证。

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