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REMOTE - Robotics activities at CERN - Robotic Solutions for remote maintenance

<!--HTML--><h3><span><span>Robotic Solutions for remote maintenance&nbsp; </span></span></h3> <p><span><span>Intelligent robotic systems are becoming essential for space applications, industries, nuclear plants and for harsh environmen...

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Autor principal: Di Castro, Mario
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:http://cds.cern.ch/record/2800316
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author Di Castro, Mario
author_facet Di Castro, Mario
author_sort Di Castro, Mario
collection CERN
description <!--HTML--><h3><span><span>Robotic Solutions for remote maintenance&nbsp; </span></span></h3> <p><span><span>Intelligent robotic systems are becoming essential for space applications, industries, nuclear plants and for harsh environments in general, such as the European Organization for Nuclear Research (CERN) particles accelerator complex and experiments. Robotics technology has huge potential benefits for people and its ultimate scope depends on the way this technology is used. In order to increase safety and machine availability, robots can perform repetitive, unplanned and dangerous tasks, which humans either prefer to avoid or are unable to carry out due to hazards, size constraints, or the extreme environments in which they take place. Nowadays, mechatronic systems use mature technologies that allow their robust and safe use, even in collaboration with human workers. In this presentation, the current status of the robotic activities performed at CERN by the BE-CEM group is presented. Several robotics solutions have been applied in the past years at CERN, as well as custom made robotic devices. New ideas and solution could come in the close future to increase safety of CERN personnel decreasing radiation dose taken. Current and future research and development in robotics done at CERN are described, as well as the results from the commissioning of various novel robotic controls.</span></span></p> <p><strong><span><span>Short bio Mario Di Castro</span></span></strong></p> <p>Dr. Mario Di Castro received the M.Sc. degree in electronic engineering from the University of Naples "Federico II", Italy, and the PhD degree from the Polytechnic University of Madrid, Spain. From 2007 until 2011, he works at EMBL c/o DESY in charge of advanced mechatronics solutions for synchrotron beamlines controls. Since 2011, he works at the European Organization for Nuclear Research &nbsp;(CERN) where, since 2018, he leads the Mechatronics, Robotics and Operation section. The section is responsible for the design, installation, operation and maintenance of control systems based on different platforms (PLC,PXI,VME) for movable devices characterized by few um positioning accuracy (e.g. scrapers, collimators, shielding and target) in harsh environment. Important section activities are the design, construction, installation, operation and maintenance of robotic systems used for remote interventions in the whole CERN accelerator complex. His research interests are mainly focused on modular robots, human robot interfaces, machine learning, enhanced reality, automatic controls, mechatronics, motion control in harsh environment and advanced robotics also for search and rescue scenarios.<br /> &nbsp;</p>
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
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spelling cern-28003162022-11-03T08:15:18Zhttp://cds.cern.ch/record/2800316engDi Castro, MarioREMOTE - Robotics activities at CERN - Robotic Solutions for remote maintenanceREMOTE - Robotics activities at CERN - Robotic Solutions for remote maintenanceAcademic Training Lecture Regular Programme<!--HTML--><h3><span><span>Robotic Solutions for remote maintenance&nbsp; </span></span></h3> <p><span><span>Intelligent robotic systems are becoming essential for space applications, industries, nuclear plants and for harsh environments in general, such as the European Organization for Nuclear Research (CERN) particles accelerator complex and experiments. Robotics technology has huge potential benefits for people and its ultimate scope depends on the way this technology is used. In order to increase safety and machine availability, robots can perform repetitive, unplanned and dangerous tasks, which humans either prefer to avoid or are unable to carry out due to hazards, size constraints, or the extreme environments in which they take place. Nowadays, mechatronic systems use mature technologies that allow their robust and safe use, even in collaboration with human workers. In this presentation, the current status of the robotic activities performed at CERN by the BE-CEM group is presented. Several robotics solutions have been applied in the past years at CERN, as well as custom made robotic devices. New ideas and solution could come in the close future to increase safety of CERN personnel decreasing radiation dose taken. Current and future research and development in robotics done at CERN are described, as well as the results from the commissioning of various novel robotic controls.</span></span></p> <p><strong><span><span>Short bio Mario Di Castro</span></span></strong></p> <p>Dr. Mario Di Castro received the M.Sc. degree in electronic engineering from the University of Naples "Federico II", Italy, and the PhD degree from the Polytechnic University of Madrid, Spain. From 2007 until 2011, he works at EMBL c/o DESY in charge of advanced mechatronics solutions for synchrotron beamlines controls. Since 2011, he works at the European Organization for Nuclear Research &nbsp;(CERN) where, since 2018, he leads the Mechatronics, Robotics and Operation section. The section is responsible for the design, installation, operation and maintenance of control systems based on different platforms (PLC,PXI,VME) for movable devices characterized by few um positioning accuracy (e.g. scrapers, collimators, shielding and target) in harsh environment. Important section activities are the design, construction, installation, operation and maintenance of robotic systems used for remote interventions in the whole CERN accelerator complex. His research interests are mainly focused on modular robots, human robot interfaces, machine learning, enhanced reality, automatic controls, mechatronics, motion control in harsh environment and advanced robotics also for search and rescue scenarios.<br /> &nbsp;</p>oai:cds.cern.ch:28003162022
spellingShingle Academic Training Lecture Regular Programme
Di Castro, Mario
REMOTE - Robotics activities at CERN - Robotic Solutions for remote maintenance
title REMOTE - Robotics activities at CERN - Robotic Solutions for remote maintenance
title_full REMOTE - Robotics activities at CERN - Robotic Solutions for remote maintenance
title_fullStr REMOTE - Robotics activities at CERN - Robotic Solutions for remote maintenance
title_full_unstemmed REMOTE - Robotics activities at CERN - Robotic Solutions for remote maintenance
title_short REMOTE - Robotics activities at CERN - Robotic Solutions for remote maintenance
title_sort remote - robotics activities at cern - robotic solutions for remote maintenance
topic Academic Training Lecture Regular Programme
url http://cds.cern.ch/record/2800316
work_keys_str_mv AT dicastromario remoteroboticsactivitiesatcernroboticsolutionsforremotemaintenance