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首页> 外文期刊>Robotics and Computer Integrated Manufacturing >Fault-tolerant and maximally-permissive FMS controllers right out of the box―an automatic design approach
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Fault-tolerant and maximally-permissive FMS controllers right out of the box―an automatic design approach

机译:开箱即用的容错和最大许可FMS控制器-一种自动设计方法

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摘要

This paper presents a comprehensive, all-in-one approach to automatic generation of high-level coordination controllers for flexible manufacturing systems (FMS). The approach comprises an intuitive graphical world wide web (WWW) user interface to specify the FMS layout and the desired production sequences. It also includes algorithms (a) to generate a proper Pctri Net model for the specified plant, (b) to set up optimal (i.e. minimally restrictive) collision and deadlock avoidance policies together with a proper supervisory controller to enforce these policies, and (c) to react to disturbances such as machine breakdowns. These algorithms run in the design (offline) phase without user interaction. During online operation the operator only needs to indicate the arrival of new raw materials and the removal of finished products using the same user interface as mentioned before. An example implementation demonstrates the applicability and efficiency of the proposed approach.
机译:本文提出了一种全面,一体化的方法,可以自动生成用于柔性制造系统(FMS)的高级协调控制器。该方法包括一个直观的图形化万维网(WWW)用户界面,以指定FMS布局和所需的生产顺序。它还包括算法(a)为指定工厂生成适当的Pctri Net模型,(b)设置最佳(即最小限制)的冲突和死锁避免策略,以及适当的监督控制器以实施这些策略,以及(c )对机器故障等干扰做出反应。这些算法在设计(离线)阶段运行,无需用户交互。在线操作期间,操作员只需使用与前面提到的相同的用户界面指示新原料的到来和成品的取出。一个示例实现演示了所提出方法的适用性和效率。

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