Factories of the future must be capable to adapt themselves to continuously changing market demand. Therefore new manufacturing technologies are needed: from agile operating machines up to internet based services. In particular, new advanced automation solutions, that integrate all factory levels in a unique real time framework, are mandatory. Nowadays, neither accepted standards nor assessed development methodologies and software environments are available to support industries when facing such a crucial issue. In the present contribution an open and modular automation system architecture is proposed, based on emerging modelling paradigms and recent international standards. Furthermore, a methodology to develop self-adaptive factory automation solutions is illustrated, using a novel modular simulation based method to verify digitally - through a modular bottom up approach - the correctness of real size automation systems. The proposed framework has been applied to a highly innovative reconfigurable factory for personalised shoes production. Such a real-size industrial application proves the effectiveness and the benefits of the presented methods for the development of complex automation solutions for high value added production systems.
[1]
Marco Liserre,et al.
Proceedings of the IEEE International Symposium on Industrial Electronics
,
2007,
ISIE 2007.
[2]
E. Carpanzano,et al.
A structured approach to the design and simulation-based testing of factory automation systems
,
2002,
Industrial Electronics, 2002. ISIE 2002. Proceedings of the 2002 IEEE International Symposium on.
[3]
Emanuele Carpanzano,et al.
Object-Oriented Models for Advanced Automation Engineering
,
1998
.
[4]
Kazuo Yamazaki,et al.
Open Controller Architecture – Past, Present and Future
,
2001
.
[5]
Emanuele Carpanzano,et al.
A structured methodology for the design and implementation of control and supervision systems for robotic applications
,
2002,
IEEE Trans. Control. Syst. Technol..
[6]
F. Jovane,et al.
Reconfigurable Manufacturing Systems
,
1999
.