Skip to main content
Vai all'homepage della Commissione europea (si apre in una nuova finestra)
italiano it
CORDIS - Risultati della ricerca dell’UE
CORDIS
Contenuto archiviato il 2024-04-16

Advanced Robotics Manipulation System

Obiettivo

The objective of ARMS is to specify and develop a prototype robotic system capable of performing complex tasks.
The objective of the advanced robotics manipulation system (ARMS) is to specify and develop a prototype robotic system capable of performing complex tasks.
The goal for the manipulator area is to develop a new robot with increased speed and accuracy. This shall be performed with the aid of new design methods (for example lightweight concepts), with new calculation methods and new simulation methods. Furthermore, the integration of direct drives will lead to less backlash, more stiffness and more speed.
The specified robot controller prototype developed in the scope of the project will perform the standard functionalities of existing robot controllers and will integrate innovative aspects such as: multiprocessors, multitasking architecture, the use of sensors (force and proximity) to generate compliant motions using a powerful sensor interface fieldnet, a robot language associated with a sequential function chart for the whole description of the workcell, offline programming of the robot movements using a common language (with the offline system and dedicated tools for the calibration of the robot and its workcell), an open architecture which will enable an advanced user to implement his own control design with respect to the task carried out.
The simulation and offline programming system encompasses advanced functions such as assembly plan generation, collision free trajectories generation, sensor simulation and logical line and cell design. The development will be targeted at several applications in the automotive and domestic appliance industries. The domestic product application will involve imprecise geometry, cooperation of multiple robots, and manipulation of pliable parts (electric cables, rubber hoses, etc).
Major developments are planned in the following work-areas:

Manipulator

The goal for the manipulator area is to develop a new robot with increased speed and accuracy. This shall be performed with the aid of new design methods, for example lightweight concepts, with new calculation methods and new simulation methods. Furthermore, the integration of direct drives will lead to less backlash, more stiffness and more speed.

Controller

The specified robot controller prototype developed in the scope of the project will perform the standard functionalities of existing robot controllers and will integrate innovative aspects such as: multiprocessors; multitasking architecture; the use of sensors (force and proximity) to generate compliant motions using a powerful sensor interface fieldnet; a robot language associated with a sequential function chart for the whole description of the workcell; off-line programming of the robot movements using a common language (with the off-line system and dedicated tools for the calibration of the robot and its workcell); an open architecture which will enable an advanced user to implement his own control design with respect to the task carried out.

Simulation and off-line programming

The simulation and off-line programming system encompasses advanced functions such as assembly plan generation, collision free trajectories generation, sensor simulation, and logical line and cell design.

Exploitation

The development will be targeted at several applications in the automotive and domestic appliance industries, namely:

- automotive subcomponent assembly (doors, dashboards, front-ends)
- assembly of these components into vehicles
- washing machine, refrigerator and cooker assembly.

The domestic product application will involve imprecise geometry, cooperation of multiple robots, and manipulation of pliable parts (electric cables, rubber hoses, etc).

The results of the project will be exploited by the consortium for assembly operations. The products developed within this project will be commercialised directly by the industrial partners.

Campo scientifico (EuroSciVoc)

CORDIS classifica i progetti con EuroSciVoc, una tassonomia multilingue dei campi scientifici, attraverso un processo semi-automatico basato su tecniche NLP. Cfr.: Il Vocabolario Scientifico Europeo.

È necessario effettuare l’accesso o registrarsi per utilizzare questa funzione

Programma(i)

Programmi di finanziamento pluriennali che definiscono le priorità dell’UE in materia di ricerca e innovazione.

Argomento(i)

Gli inviti a presentare proposte sono suddivisi per argomenti. Un argomento definisce un’area o un tema specifico per il quale i candidati possono presentare proposte. La descrizione di un argomento comprende il suo ambito specifico e l’impatto previsto del progetto finanziato.

Dati non disponibili

Invito a presentare proposte

Procedura per invitare i candidati a presentare proposte di progetti, con l’obiettivo di ricevere finanziamenti dall’UE.

Dati non disponibili

Meccanismo di finanziamento

Meccanismo di finanziamento (o «Tipo di azione») all’interno di un programma con caratteristiche comuni. Specifica: l’ambito di ciò che viene finanziato; il tasso di rimborso; i criteri di valutazione specifici per qualificarsi per il finanziamento; l’uso di forme semplificate di costi come gli importi forfettari.

Dati non disponibili

Coordinatore

CITROEN-PSA
Contributo UE
Nessun dato
Indirizzo
62 BOULEVARD VICTOR HUGO
92208 NEUILLY-SUR-SEINE
Francia

Mostra sulla mappa

Costo totale

I costi totali sostenuti dall’organizzazione per partecipare al progetto, compresi i costi diretti e indiretti. Questo importo è un sottoinsieme del bilancio complessivo del progetto.

Nessun dato

Partecipanti (7)

Il mio fascicolo 0 0