Collision Avoidance Systems in Synchrotron SOLEIL

Autor: Engblom, Christer, Akinotcho, Stephane, Amelineau, Louis, Bouvel, Simon, Corruble, Dominique, Monteiro, Paulo, Munoz, Laura, Pilliaud, Bertrand, Thibaux, Gauthier, Zhang, Shu
Jazyk: angličtina
Rok vydání: 2022
Předmět:
DOI: 10.18429/jacow-icalepcs2021-tupv042
Popis: Beamlines at Synchrotron SOLEIL are finding that their experimental setups (in respect to their respective sample environments, mechanical systems, and detectors) are getting more constrained when it comes to motorized manoeuvrability - an increasing number of mechanical instruments are being actuated within the same workspace hence increasing the risk of collision. We will in this paper outline setups with two types of Collision Avoidance Systems (CAS): (1) Static-CAS applications, currently being employed at the PUMA and NANOSCOPIUM beamlines, that use physical or contactless sensors coupled with PLC- and motion control- systems; (2) Dynamic-CAS applications, that use dynamic anti-collision algorithms combining encoder feedback and 3D-models of the system environment, implemented at the ANTARES and MARS beamlines but applied using two different strategies.
Proceedings of the 18th International Conference on Accelerator and Large Experimental Physics Control Systems, ICALEPCS2021, Shanghai, China
Databáze: OpenAIRE