A control-monitoring-maintenance framework based on Petri net with objects in fl exible manufacturing system. Application to a robot-driven fl exible cell

<p>The growing complexity of systems and the need for executing large projects have led to the development of complex fl exible manufacturing systems (FMS) demanding specifi c control-monitoring architectures. The problem of failure occurrence tends<br />to increase accor...

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Main Authors: Eduardo Rocha Loures, Eduardo Alves Santos, Marco Antonio Busetti De Paula
Format: Article
Language:English
Published: Associação Brasileira de Engenharia de Produção (ABEPRO) 2010-02-01
Series:Brazilian Journal of Operations & Production Management
Online Access:http://abepro.org.br/bjopm/index.php/bjopm/article/view/19
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spelling doaj-a04d5e69743144cba3a34da5456ff6002020-11-25T02:34:43ZengAssociação Brasileira de Engenharia de Produção (ABEPRO)Brazilian Journal of Operations & Production Management1679-81712010-02-0141522A control-monitoring-maintenance framework based on Petri net with objects in fl exible manufacturing system. Application to a robot-driven fl exible cellEduardo Rocha LouresEduardo Alves SantosMarco Antonio Busetti De Paula<p>The growing complexity of systems and the need for executing large projects have led to the development of complex fl exible manufacturing systems (FMS) demanding specifi c control-monitoring architectures. The problem of failure occurrence tends<br />to increase according to this complexity leading to time-consuming tasks as the localisation and repairing. The occurrence of failures during the exploitation stage can deeply modify the FMS performances or its availability. In this context, the maintenance integration into a control-monitoring system becomes an important issue, improving production time and minimizing unplanned costly breakdowns of FMS. We want to investigate the problem of triggering the maintenance, giving a useful decision support tool to evaluate the system availability since the control system’s early design stage. It also results in improvement of the system’s functionality in terms of effi ciency, productivity and quality. This paper proposes a control- monitoringmaintenance architecture (CMM) for FMS based on Petri nets with objects (PNO), where stochastic rates are associated to the modelling of maintenance planning. This<br />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<br />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 fl exible cell, connected to the Ethernet-TCP/IP.</p> http://abepro.org.br/bjopm/index.php/bjopm/article/view/19
collection DOAJ
language English
format Article
sources DOAJ
author Eduardo Rocha Loures
Eduardo Alves Santos
Marco Antonio Busetti De Paula
spellingShingle Eduardo Rocha Loures
Eduardo Alves Santos
Marco Antonio Busetti De Paula
A control-monitoring-maintenance framework based on Petri net with objects in fl exible manufacturing system. Application to a robot-driven fl exible cell
Brazilian Journal of Operations & Production Management
author_facet Eduardo Rocha Loures
Eduardo Alves Santos
Marco Antonio Busetti De Paula
author_sort Eduardo Rocha Loures
title A control-monitoring-maintenance framework based on Petri net with objects in fl exible manufacturing system. Application to a robot-driven fl exible cell
title_short A control-monitoring-maintenance framework based on Petri net with objects in fl exible manufacturing system. Application to a robot-driven fl exible cell
title_full A control-monitoring-maintenance framework based on Petri net with objects in fl exible manufacturing system. Application to a robot-driven fl exible cell
title_fullStr A control-monitoring-maintenance framework based on Petri net with objects in fl exible manufacturing system. Application to a robot-driven fl exible cell
title_full_unstemmed A control-monitoring-maintenance framework based on Petri net with objects in fl exible manufacturing system. Application to a robot-driven fl exible cell
title_sort control-monitoring-maintenance framework based on petri net with objects in fl exible manufacturing system. application to a robot-driven fl exible cell
publisher Associação Brasileira de Engenharia de Produção (ABEPRO)
series Brazilian Journal of Operations & Production Management
issn 1679-8171
publishDate 2010-02-01
description <p>The growing complexity of systems and the need for executing large projects have led to the development of complex fl exible manufacturing systems (FMS) demanding specifi c control-monitoring architectures. The problem of failure occurrence tends<br />to increase according to this complexity leading to time-consuming tasks as the localisation and repairing. The occurrence of failures during the exploitation stage can deeply modify the FMS performances or its availability. In this context, the maintenance integration into a control-monitoring system becomes an important issue, improving production time and minimizing unplanned costly breakdowns of FMS. We want to investigate the problem of triggering the maintenance, giving a useful decision support tool to evaluate the system availability since the control system’s early design stage. It also results in improvement of the system’s functionality in terms of effi ciency, productivity and quality. This paper proposes a control- monitoringmaintenance architecture (CMM) for FMS based on Petri nets with objects (PNO), where stochastic rates are associated to the modelling of maintenance planning. This<br />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<br />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 fl exible cell, connected to the Ethernet-TCP/IP.</p>
url http://abepro.org.br/bjopm/index.php/bjopm/article/view/19
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