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Methods and results of modeling and transmission-line calculations of the superconducting dipole chains of CERN's LHC collider

Electrical modeling and simulation of the LHC magnet strings are being used to determine the key parameters that are needed for the design of the powering and energy extraction equipment. Poles and zeros of the Laplace expression approximating the Bode plot of the measured coil impedance are used to...

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Autores principales: Bourgeois, F, Dahlerup-Petersen, K
Lenguaje:eng
Publicado: 2001
Materias:
Acceso en línea:http://cds.cern.ch/record/592974
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author Bourgeois, F
Dahlerup-Petersen, K
author_facet Bourgeois, F
Dahlerup-Petersen, K
author_sort Bourgeois, F
collection CERN
description Electrical modeling and simulation of the LHC magnet strings are being used to determine the key parameters that are needed for the design of the powering and energy extraction equipment. Poles and zeros of the Laplace expression approximating the Bode plot of the measured coil impedance are used to synthesize an R/L/C model of the magnet. Subsequently, this model is used to simulate the behavior of the LHC main dipole magnet string. Lumped transmission line behavior, impedance, resonance, propagation of the power supply ripple, ramping errors, energy extraction transients and their damping are presented in this paper. (3 refs).
id cern-592974
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2001
record_format invenio
spelling cern-5929742023-05-31T13:22:52Zhttp://cds.cern.ch/record/592974engBourgeois, FDahlerup-Petersen, KMethods and results of modeling and transmission-line calculations of the superconducting dipole chains of CERN's LHC colliderAccelerators and Storage RingsElectrical modeling and simulation of the LHC magnet strings are being used to determine the key parameters that are needed for the design of the powering and energy extraction equipment. Poles and zeros of the Laplace expression approximating the Bode plot of the measured coil impedance are used to synthesize an R/L/C model of the magnet. Subsequently, this model is used to simulate the behavior of the LHC main dipole magnet string. Lumped transmission line behavior, impedance, resonance, propagation of the power supply ripple, ramping errors, energy extraction transients and their damping are presented in this paper. (3 refs).LHC-Project-Report-497CERN-LHC-Project-Report-497oai:cds.cern.ch:5929742001-08-27
spellingShingle Accelerators and Storage Rings
Bourgeois, F
Dahlerup-Petersen, K
Methods and results of modeling and transmission-line calculations of the superconducting dipole chains of CERN's LHC collider
title Methods and results of modeling and transmission-line calculations of the superconducting dipole chains of CERN's LHC collider
title_full Methods and results of modeling and transmission-line calculations of the superconducting dipole chains of CERN's LHC collider
title_fullStr Methods and results of modeling and transmission-line calculations of the superconducting dipole chains of CERN's LHC collider
title_full_unstemmed Methods and results of modeling and transmission-line calculations of the superconducting dipole chains of CERN's LHC collider
title_short Methods and results of modeling and transmission-line calculations of the superconducting dipole chains of CERN's LHC collider
title_sort methods and results of modeling and transmission-line calculations of the superconducting dipole chains of cern's lhc collider
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/592974
work_keys_str_mv AT bourgeoisf methodsandresultsofmodelingandtransmissionlinecalculationsofthesuperconductingdipolechainsofcernslhccollider
AT dahleruppetersenk methodsandresultsofmodelingandtransmissionlinecalculationsofthesuperconductingdipolechainsofcernslhccollider