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Digital Beam Trajectory and Orbit System, for the CERN Proton Synchrotron

A new trajectory and orbit measurement system using fast signal sampling and digital signal processing in an FPGA is proposed for the CERN PS. The system uses a constant sampling frequency while the beam revolution frequency changes during acceleration. Synchronization with the beam is accomplished...

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Detalles Bibliográficos
Autores principales: Kasprowicz, G, Belleman, J, Raich, U
Lenguaje:eng
Publicado: 2007
Materias:
Acceso en línea:http://cds.cern.ch/record/1045237
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author Kasprowicz, G
Belleman, J
Raich, U
author_facet Kasprowicz, G
Belleman, J
Raich, U
author_sort Kasprowicz, G
collection CERN
description A new trajectory and orbit measurement system using fast signal sampling and digital signal processing in an FPGA is proposed for the CERN PS. The system uses a constant sampling frequency while the beam revolution frequency changes during acceleration. Synchronization with the beam is accomplished through a numerical PLL algorithm. This algorithm is also capable of treating RF gymnastics like bunch splitting or batch compression with the help of external timing signals. Baseline and position calculation are provided in the FPGA code as well. After having implemented the algorithms in C and MatLab and tested them with data from a test run at the PS, they have now been implemented in the FPGA for online use. Results of measurements on a single beam position monitor in the CERN PS and the SIS-18 at GSI will be presented.
id cern-1045237
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2007
record_format invenio
spelling cern-10452372022-08-17T13:35:17Zhttp://cds.cern.ch/record/1045237engKasprowicz, GBelleman, JRaich, UDigital Beam Trajectory and Orbit System, for the CERN Proton SynchrotronAccelerators and Storage RingsA new trajectory and orbit measurement system using fast signal sampling and digital signal processing in an FPGA is proposed for the CERN PS. The system uses a constant sampling frequency while the beam revolution frequency changes during acceleration. Synchronization with the beam is accomplished through a numerical PLL algorithm. This algorithm is also capable of treating RF gymnastics like bunch splitting or batch compression with the help of external timing signals. Baseline and position calculation are provided in the FPGA code as well. After having implemented the algorithms in C and MatLab and tested them with data from a test run at the PS, they have now been implemented in the FPGA for online use. Results of measurements on a single beam position monitor in the CERN PS and the SIS-18 at GSI will be presented.CERN-AB-2007-021oai:cds.cern.ch:10452372007
spellingShingle Accelerators and Storage Rings
Kasprowicz, G
Belleman, J
Raich, U
Digital Beam Trajectory and Orbit System, for the CERN Proton Synchrotron
title Digital Beam Trajectory and Orbit System, for the CERN Proton Synchrotron
title_full Digital Beam Trajectory and Orbit System, for the CERN Proton Synchrotron
title_fullStr Digital Beam Trajectory and Orbit System, for the CERN Proton Synchrotron
title_full_unstemmed Digital Beam Trajectory and Orbit System, for the CERN Proton Synchrotron
title_short Digital Beam Trajectory and Orbit System, for the CERN Proton Synchrotron
title_sort digital beam trajectory and orbit system, for the cern proton synchrotron
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1045237
work_keys_str_mv AT kasprowiczg digitalbeamtrajectoryandorbitsystemforthecernprotonsynchrotron
AT bellemanj digitalbeamtrajectoryandorbitsystemforthecernprotonsynchrotron
AT raichu digitalbeamtrajectoryandorbitsystemforthecernprotonsynchrotron