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Coloured Petri nets and graphical simulation for the validation of a robotic cell in aircraft industry

机译:彩色Petri网和图形仿真,用于验证飞机工业中的机器人单元

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This paper proposes a mixed validation approach based on coloured Petri nets and 3D graphic simulation for the design of supervisory systems in manufacturing cells with multiple robots. The coloured Petri net is used to model the cell behaviour at a high level of abstraction. It models the activities of each cell component and its coordination by a supervisory system. The graphical simulation is used to analyse and validate the cell behaviour in a 3D environment, allowing the detection of collisions and the calculation of process times. The motivation for this work comes from the aeronautic industry. The automation of a fuselage assembly process requires the integration of robots with other cell components such as metrological or vision systems. In this cell, the robot trajectories are defined by the supervisory system and results from the coordination of the cell components. The paper presents the application of the approach for an aircraft assembly cell under integration in Brazil. This case study shows the feasibility of the approach and supports the discussion of its main advantages and limits.
机译:本文提出了一种基于彩色Petri网和3D图形仿真的混合验证方法,用于设计具有多个机器人的生产单元中的监控系统。有色Petri网用于在高抽象水平上对单元行为进行建模。它通过监视系统对每个单元组件的活动及其协调进行建模。图形仿真用于分析和验证3D环境中的单元行为,从而可以检测碰撞并计算处理时间。这项工作的动力来自航空业。机身组装过程的自动化要求将机器人与其他单元组件(例如计量或视觉系统)集成在一起。在该单元中,机器人的轨迹由监控系统定义,并由单元组件的协调产生。本文介绍了该方法在巴西一体化飞机组装单元中的应用。此案例研究显示了该方法的可行性,并支持对其主要优点和局限性的讨论。

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