Dealing with Communication Channels within IEC61499 Component-Based Systems

Author:

Pérez Federico1,Calvo Isidro1,López Fabian1,Etxeberria‐Agiriano Ismael2

Affiliation:

1. Dept. of Automatic Control and Systems Engineering University of the Basque Country (UPV/EHU) Bilbao, Spain

2. Dept. of Computer Languages and Systems University of the Basque Country (UPV/EHU) Vitoria, Spain

Abstract

Traditional approaches for developing automation systems consider system itself hardly can be changed. Current challenges in automation applications include the need of autoreconfiguration in response to process changes or event triggering. In order to face these requirements, new automation methodologies are necessary. Component-based technologies, initially defined for achieving efficient, structured and reusable designs can also be used to achieve adaptation. In this work, an IEC 61499-based framework that uses the concept to deal with reconfiguration issues is presented. The final output of the framework is a distributed system IEC61499 compliant. A new concept, the communication channel, is introduced providing a new abstraction layer to deal with communication between components. The joint use of automation components and communication channels allows defining complex automation systems in an easy way.

Publisher

North Atlantic University Union (NAUN)

Reference23 articles.

1. International Electrotechnical Commission, “IEC 61131-3: Programmable Controllers. Part 3: Programming Languages”, International Standard, 2003.

2. International Electrotechnical Commission “IEC 61499-1: Function Blocks - Part 1 Architecture”, International Standard, First Edition, Geneva, 2005.

3. International Electrotechnical Commission “IEC 61499-2: Function Blocks - Part 2 Software tool requirements”, International Standard, First Edition, Geneva, 2004.

4. Marcos, M., Estévez, E., Pérez, F., Van Der Wal, E., “XML Exchange of Control Programs”, IEEE Industrial Electronics Magazine, Vol.3, pp. 32-35, 2009.

5. Lewis. R., Modelling control systems using IEC 61499, Control Engineering Series 59. The Institution of Electrical Engineers, 2001.

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