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Publicações

Publicações por Paulo Jorge Leitão

1996

A manufacturing cell integration solution

Autores
Leitao, PJ; Machado, JM; Lopes, JR;

Publicação
BALANCED AUTOMATION SYSTEMS II: IMPLEMENTATION CHALLENGES FOR ANTHROPOCENTRIC MANUFACTURING

Abstract
This paper intents to describe the work of integration developed in the metalwork manufacturing cell of CCP (Centro de CIM do Porto). It focus on the manufacturing cell philosophy, the structure of the cell controller, and the integration work with the MMS communication standard. The present work was developed at CCP as a part of the ESPRIT 5629 Project, concluded in October 1995.

1997

A cell controller architecture solution: Description and analysis of performance and costs

Autores
Quintas, A; Leitao, P;

Publicação
RE-ENGINEERING FOR SUSTAINABLE INDUSTRIAL PRODUCTION

Abstract
Nowadays, with the globalization of the markets, the companies must to implement new manufacturing technologies and concepts for the improvement of manufacturing systems productivity. The integration is one of the keys to solve the problems in manufacturing systems. The arrangement of the resources in cells and the implementation of control systems allows the improvement of productivity, flexibility, quality and the reduction of production costs. This paper describes a Cell Controller architecture solution, implemented at the flexible manufacturing cell integrated into the demonstration pilot of an ESPRIT Program Project; special attention to the control structure and the system communication is taken. The last part of the paper focuses the costs involved in this solution and presents the alternative platforms and technologies to implement the Cell Controller.

1998

A new architecture for flexible shop control systems

Autores
Teunis, G; Leitao, P; Madden, M;

Publicação
CHANGING THE WAYS WE WORK: SHAPING THE ICT-SOLUTIONS FOR THE NEXT CENTURY

Abstract
In the last two decades there has been a marked trend in manufacturing away from function-centered production organisations towards product-based manufacturing shops and smaller organisational units. These new organisation structures reduce management complexity and facilitate greater human involvement and empowerment. Modern manufacturing facilities must be flexible, to allow for rapid reconfiguring of resources as dictated by variable demands. Today's tools for production planning and scheduling are not flexible enough, most of them being based on a certain production structure. A newly-developed kernel/shell technology aims at a software architecture for shop central not being based on any assumption of the production structure. it should be possible to support almost any structure, organisation and scheduling algorithm. A central kernel acts as a service provider for a broad array of shell modules for scheduling, interfacing with legacy systems database I/O, user interaction, SCADA interfacing, etc. This technology for shop control provides a high degree of customisation, flexibility and extendibility.

2002

A Holonic Control Approach for Distributed Manufacturing

Autores
Leitão, P; Restivo, F;

Publicação
Knowledge and Technology Integration in Production and Services

Abstract

2003

Towards Autonomy, Self-Organisation and Learning in Holonic Manufacturing

Autores
Leitão, P; Restivo, F;

Publicação
Lecture Notes in Computer Science - Multi-Agent Systems and Applications III

Abstract

2003

Identification of adacor holons for manufacturing control

Autores
Leitao, P; Restivo, F;

Publicação
INTELLIGENT MANUFACTURING SYSTEMS 2003

Abstract
The identification of the holons is a critical task in the development of holonic manufacturing control system applications. This paper discusses a methodology to develop distributed manufacturing control systems for the shop floor level, based on the ADACOR holonic architecture. The methodology comprises a set of steps, the more relevant being the identification of the manufacturing holons and the development of holons based on re-use libraries supported by the ADACOR approach. The paper focus on the first step and describes a procedure to identify the holons present in a manufacturing system. Copyright (C) 2003 IFAC.

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