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Uncertainty Modeling and Analysis of the European X-ray Free Electron Laser Cavities Manufacturing Process

This paper reports on comprehensive efforts on uncertainty quantification and global sensitivity analysis for accelerator cavity design. As a case study object the TESLA shaped superconducting cavities, as produced for the European X-ray Free Electron Laser (EXFEL), are selected. The choice for thes...

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Autores principales: Corno, J., Georg, N., Gorgi Zadeh, S., Heller, J., Gubarev, V., Roggen, T., Römer, U., Schmidt, C., Schöps, S., Schultz, J., Sulimov, A., van Rienen, U.
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nima.2020.164135
http://cds.cern.ch/record/2725292
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author Corno, J.
Georg, N.
Gorgi Zadeh, S.
Heller, J.
Gubarev, V.
Roggen, T.
Römer, U.
Schmidt, C.
Schöps, S.
Schultz, J.
Sulimov, A.
van Rienen, U.
author_facet Corno, J.
Georg, N.
Gorgi Zadeh, S.
Heller, J.
Gubarev, V.
Roggen, T.
Römer, U.
Schmidt, C.
Schöps, S.
Schultz, J.
Sulimov, A.
van Rienen, U.
author_sort Corno, J.
collection CERN
description This paper reports on comprehensive efforts on uncertainty quantification and global sensitivity analysis for accelerator cavity design. As a case study object the TESLA shaped superconducting cavities, as produced for the European X-ray Free Electron Laser (EXFEL), are selected. The choice for these cavities is explained by the available measurement data that can be leveraged to substantiate the simulation model. Each step of the manufacturing chain is documented together with the involved uncertainties. Several of these steps are mimicked on the simulation side, e.g., by introducing a random eigenvalue problem. The uncertainties are then quantified numerically and in particular the sensitivities give valuable insight into the system behavior. We also compare these findings to purely statistical studies carried out for the manufactured cavities. More advanced, adaptive, surrogate modeling techniques are adopted, which are crucial to incorporate a large number of uncertain parameters. The main contribution is the detailed comparison and fusion of measurement results for the EXFEL cavities on the one hand and simulation based uncertainty studies on the other hand. After introducing the quantities of physical interest for accelerator cavities and the Maxwell eigenvalue problem, the details on the manufacturing of the EXFEL cavities and measurements are reported. This is followed by uncertainty modeling with quantification studies.
id cern-2725292
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling cern-27252922023-03-14T17:23:36Zdoi:10.1016/j.nima.2020.164135http://cds.cern.ch/record/2725292engCorno, J.Georg, N.Gorgi Zadeh, S.Heller, J.Gubarev, V.Roggen, T.Römer, U.Schmidt, C.Schöps, S.Schultz, J.Sulimov, A.van Rienen, U.Uncertainty Modeling and Analysis of the European X-ray Free Electron Laser Cavities Manufacturing Processphysics.acc-phAccelerators and Storage Ringscs.CEComputing and ComputersThis paper reports on comprehensive efforts on uncertainty quantification and global sensitivity analysis for accelerator cavity design. As a case study object the TESLA shaped superconducting cavities, as produced for the European X-ray Free Electron Laser (EXFEL), are selected. The choice for these cavities is explained by the available measurement data that can be leveraged to substantiate the simulation model. Each step of the manufacturing chain is documented together with the involved uncertainties. Several of these steps are mimicked on the simulation side, e.g., by introducing a random eigenvalue problem. The uncertainties are then quantified numerically and in particular the sensitivities give valuable insight into the system behavior. We also compare these findings to purely statistical studies carried out for the manufactured cavities. More advanced, adaptive, surrogate modeling techniques are adopted, which are crucial to incorporate a large number of uncertain parameters. The main contribution is the detailed comparison and fusion of measurement results for the EXFEL cavities on the one hand and simulation based uncertainty studies on the other hand. After introducing the quantities of physical interest for accelerator cavities and the Maxwell eigenvalue problem, the details on the manufacturing of the EXFEL cavities and measurements are reported. This is followed by uncertainty modeling with quantification studies.This paper reports on comprehensive efforts on uncertainty quantification and global sensitivity analysis for accelerator cavity design. As a case study object the TESLA shaped superconducting cavities, as produced for the European X-ray Free Electron Laser (EXFEL), are selected. The choice for these cavities is explained by the available measurement data that can be leveraged to substantiate the simulation model. Each step of the manufacturing chain is documented together with the involved uncertainties. Several of these steps are mimicked on the simulation side, e.g. by introducing a random eigenvalue problem. The uncertainties are then quantified numerically and in particular the sensitivities give valuable insight into the systems behavior. We also compare these findings to purely statistical studies carried out for the manufactured cavities. More advanced, adaptive, surrogate modeling techniques are adopted, which are crucial to incorporate a large number of uncertain parameters. The main contribution is the detailed comparison and fusion of measurement results for the EXFEL cavities on the one hand and simulation based uncertainty studies on the other hand. After introducing the quantities of physical interest for accelerator cavities and the Maxwell eigenvalue problem, the details on the manufacturing of the EXFEL cavities and measurements are reported. This is followed by uncertainty modeling with quantification studies.arXiv:1906.09151oai:cds.cern.ch:27252922019-06-21
spellingShingle physics.acc-ph
Accelerators and Storage Rings
cs.CE
Computing and Computers
Corno, J.
Georg, N.
Gorgi Zadeh, S.
Heller, J.
Gubarev, V.
Roggen, T.
Römer, U.
Schmidt, C.
Schöps, S.
Schultz, J.
Sulimov, A.
van Rienen, U.
Uncertainty Modeling and Analysis of the European X-ray Free Electron Laser Cavities Manufacturing Process
title Uncertainty Modeling and Analysis of the European X-ray Free Electron Laser Cavities Manufacturing Process
title_full Uncertainty Modeling and Analysis of the European X-ray Free Electron Laser Cavities Manufacturing Process
title_fullStr Uncertainty Modeling and Analysis of the European X-ray Free Electron Laser Cavities Manufacturing Process
title_full_unstemmed Uncertainty Modeling and Analysis of the European X-ray Free Electron Laser Cavities Manufacturing Process
title_short Uncertainty Modeling and Analysis of the European X-ray Free Electron Laser Cavities Manufacturing Process
title_sort uncertainty modeling and analysis of the european x-ray free electron laser cavities manufacturing process
topic physics.acc-ph
Accelerators and Storage Rings
cs.CE
Computing and Computers
url https://dx.doi.org/10.1016/j.nima.2020.164135
http://cds.cern.ch/record/2725292
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