Maintenance integration in a modular supervision framework based on Petri net with objects. Application to a robot-driven flexible cell

E. Loures, E. Santos, M. A. B. D. Paula
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引用次数: 4

Abstract

The growing complexity of systems and the need for executing large projects have led to the development of complex flexible manufacturing systems (FMS) demanding specific control-monitoring architectures. The problem of failure occurrence tends to increase according to this complexity leading to time-consuming tasks as the isolation and repairing. In this context, the maintenance integration into a control-monitoring system becomes an important issue. It results in improvement of the system functionality in terms of availability, efficiency, productivity and quality. This paper proposes a control-monitoring-maintenance architecture (CMM) for FMS based on Petri nets with objects (PNO). This supervision framework is based on a modular and hierarchic model structured in CMM modules. The integration is based on a development methodology in which the maintenance aspects and policies are taken into account from the conception (modelling) stage. These efforts acts as a basis for the control architecture of a robot-driven flexible cell, connected to the Ethernet-TCP/IP
基于Petri网的模块化监控框架与对象的维护集成。应用于机器人驱动的柔性电池
系统复杂性的增长和执行大型项目的需要导致了复杂柔性制造系统(FMS)的发展,要求特定的控制-监控架构。由于这种复杂性,故障发生的问题趋于增加,导致隔离和修复等任务非常耗时。在这种背景下,维护集成到控制-监控系统中成为一个重要的问题。它在可用性、效率、生产力和质量方面改善了系统功能。提出了一种基于带对象Petri网的FMS控制-监测-维护体系结构。该监督框架基于CMM模块结构的模块化和分层模型。集成基于一种开发方法,其中从概念(建模)阶段就考虑了维护方面和策略。这些努力为机器人驱动的柔性单元的控制体系结构奠定了基础,该单元连接到以太网- tcp /IP
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