Robotic cells are complex mechatronic systems whose final performance is determined by the interaction of the control logics with the mechanical behavior of the process. In this context it is fundamental to develop engineering methods and tools for the virtual prototyping of the cells that emulate both contributions. With such mechatronic digital models, it would be possible to replicate the real behavior of the systems and to optimize the cell productivity, up to building complete digital twins. This paper proposes an engineering method to develop realistic Virtual Prototypes of robotic cells including their geometry, operating logic, performance, and physical behavior. A case study on a robotic cell composed of two anthropomorphic robots for the flexible process of automatic assembly of industrial parts is presented to demonstrate the approach.

Advanced virtual prototyping of robotic cells using physics-based simulation / Raffaeli, R.; Neri, F.; Peruzzini, M.; Berselli, G.; Pellicciari, M.. - In: INTERNATIONAL JOURNAL ON INTERACTIVE DESIGN AND MANUFACTURING. - ISSN 1955-2513. - (2023), pp. 1-14. [10.1007/s12008-023-01677-y]

Advanced virtual prototyping of robotic cells using physics-based simulation

Raffaeli R.;Peruzzini M.
;
Berselli G.
;
Pellicciari M.
2023

Abstract

Robotic cells are complex mechatronic systems whose final performance is determined by the interaction of the control logics with the mechanical behavior of the process. In this context it is fundamental to develop engineering methods and tools for the virtual prototyping of the cells that emulate both contributions. With such mechatronic digital models, it would be possible to replicate the real behavior of the systems and to optimize the cell productivity, up to building complete digital twins. This paper proposes an engineering method to develop realistic Virtual Prototypes of robotic cells including their geometry, operating logic, performance, and physical behavior. A case study on a robotic cell composed of two anthropomorphic robots for the flexible process of automatic assembly of industrial parts is presented to demonstrate the approach.
2023
1
14
Advanced virtual prototyping of robotic cells using physics-based simulation / Raffaeli, R.; Neri, F.; Peruzzini, M.; Berselli, G.; Pellicciari, M.. - In: INTERNATIONAL JOURNAL ON INTERACTIVE DESIGN AND MANUFACTURING. - ISSN 1955-2513. - (2023), pp. 1-14. [10.1007/s12008-023-01677-y]
Raffaeli, R.; Neri, F.; Peruzzini, M.; Berselli, G.; Pellicciari, M.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1329828
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