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Cam Mover Alignment System positioning with the Wire Positioning with the Wire Position Sensor Feedback for CLIC

Compact Linear Collider (CLIC) is a study of an electron-positron collider with nominal energy of 3 TeV and luminosity of 2 ∙ 1034 cm-2s-1. The luminosity goal leads to stringent alignment requirements for single quadrupole magnets. Vertical and lateral offset deviations with regards to a given orbi...

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Detalles Bibliográficos
Autores principales: Kemppinen, Juha, Mainaud Durand, Helene, Kostka, Z.S.
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-MEDSI2016-MOPE15
http://cds.cern.ch/record/2238912
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author Kemppinen, Juha
Mainaud Durand, Helene
Kostka, Z.S.
author_facet Kemppinen, Juha
Mainaud Durand, Helene
Kostka, Z.S.
author_sort Kemppinen, Juha
collection CERN
description Compact Linear Collider (CLIC) is a study of an electron-positron collider with nominal energy of 3 TeV and luminosity of 2 ∙ 1034 cm-2s-1. The luminosity goal leads to stringent alignment requirements for single quadrupole magnets. Vertical and lateral offset deviations with regards to a given orbit reference in both ends of a quadrupole shall be below 1 μm and quadrupole roll deviation shall be below 100 μrad. Translation in the direction of particle beam is not controlled but mechanically locked. A parallel kinematic platform based on cam movers was chosen as system for detailed studies. Earlier studies have shown that cam movers can reach the CLIC requirements through an iterative process. The paper presents new modular off-the-shelf control electronics and software including three optional positioning algorithms based on iterations as well as a more advanced algorithm which can reach target position in one movement. The advanced algorithm reads wire position sensors (WPS), calculates quadrupole orientation based on the readings and updates the remaining trajectory during motion. All of the optional positioning methods reach the CLIC positioning requirements within minutes.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
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spelling cern-22389122023-07-20T15:02:27Zdoi:10.18429/JACoW-MEDSI2016-MOPE15http://cds.cern.ch/record/2238912engKemppinen, JuhaMainaud Durand, HeleneKostka, Z.S.Cam Mover Alignment System positioning with the Wire Positioning with the Wire Position Sensor Feedback for CLICAccelerators and Storage RingsCompact Linear Collider (CLIC) is a study of an electron-positron collider with nominal energy of 3 TeV and luminosity of 2 ∙ 1034 cm-2s-1. The luminosity goal leads to stringent alignment requirements for single quadrupole magnets. Vertical and lateral offset deviations with regards to a given orbit reference in both ends of a quadrupole shall be below 1 μm and quadrupole roll deviation shall be below 100 μrad. Translation in the direction of particle beam is not controlled but mechanically locked. A parallel kinematic platform based on cam movers was chosen as system for detailed studies. Earlier studies have shown that cam movers can reach the CLIC requirements through an iterative process. The paper presents new modular off-the-shelf control electronics and software including three optional positioning algorithms based on iterations as well as a more advanced algorithm which can reach target position in one movement. The advanced algorithm reads wire position sensors (WPS), calculates quadrupole orientation based on the readings and updates the remaining trajectory during motion. All of the optional positioning methods reach the CLIC positioning requirements within minutes.CERN-ACC-2016-0339CLIC-Note-1072oai:cds.cern.ch:22389122016-10-11
spellingShingle Accelerators and Storage Rings
Kemppinen, Juha
Mainaud Durand, Helene
Kostka, Z.S.
Cam Mover Alignment System positioning with the Wire Positioning with the Wire Position Sensor Feedback for CLIC
title Cam Mover Alignment System positioning with the Wire Positioning with the Wire Position Sensor Feedback for CLIC
title_full Cam Mover Alignment System positioning with the Wire Positioning with the Wire Position Sensor Feedback for CLIC
title_fullStr Cam Mover Alignment System positioning with the Wire Positioning with the Wire Position Sensor Feedback for CLIC
title_full_unstemmed Cam Mover Alignment System positioning with the Wire Positioning with the Wire Position Sensor Feedback for CLIC
title_short Cam Mover Alignment System positioning with the Wire Positioning with the Wire Position Sensor Feedback for CLIC
title_sort cam mover alignment system positioning with the wire positioning with the wire position sensor feedback for clic
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-MEDSI2016-MOPE15
http://cds.cern.ch/record/2238912
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AT mainauddurandhelene cammoveralignmentsystempositioningwiththewirepositioningwiththewirepositionsensorfeedbackforclic
AT kostkazs cammoveralignmentsystempositioningwiththewirepositioningwiththewirepositionsensorfeedbackforclic