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Reliability Approach for Machine Protection Design in Particle Accelerators

Particle accelerators require Machine Protection Systems (MPS) to prevent beam-induced damage of equipment in case of failures. This becomes increasingly important for proton colliders with large energy stored in the beam such as LHC, for high power accelerators with a beam power of up to 10 MW, suc...

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Detalles Bibliográficos
Autores principales: Apollonio, A, Lallement, J B, Mikulec, B, Puccio, B, Sanchez Alvarez, J L, Schmidt, R, Wagner, S
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:http://cds.cern.ch/record/1574579
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author Apollonio, A
Lallement, J B
Mikulec, B
Puccio, B
Sanchez Alvarez, J L
Schmidt, R
Wagner, S
author_facet Apollonio, A
Lallement, J B
Mikulec, B
Puccio, B
Sanchez Alvarez, J L
Schmidt, R
Wagner, S
author_sort Apollonio, A
collection CERN
description Particle accelerators require Machine Protection Systems (MPS) to prevent beam-induced damage of equipment in case of failures. This becomes increasingly important for proton colliders with large energy stored in the beam such as LHC, for high power accelerators with a beam power of up to 10 MW, such as the European Spallation Source (ESS), and for linear colliders with high beam power and very small beam size. The reliability of Machine Protection Systems is crucial for safe machine operation; all possible sources of risk need to be taken into account in the early design stage. This paper presents a systematic approach to classify failures and to assess the associated risk, and discusses the impact of such considerations on the design of Machine Protection Systems. The application of this approach will be illustrated using the new design of the MPS for LINAC4, a linear accelerator under construction at CERN.
id cern-1574579
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2013
record_format invenio
spelling cern-15745792019-09-30T06:29:59Zhttp://cds.cern.ch/record/1574579engApollonio, ALallement, J BMikulec, BPuccio, BSanchez Alvarez, J LSchmidt, RWagner, SReliability Approach for Machine Protection Design in Particle AcceleratorsAccelerators and Storage RingsParticle accelerators require Machine Protection Systems (MPS) to prevent beam-induced damage of equipment in case of failures. This becomes increasingly important for proton colliders with large energy stored in the beam such as LHC, for high power accelerators with a beam power of up to 10 MW, such as the European Spallation Source (ESS), and for linear colliders with high beam power and very small beam size. The reliability of Machine Protection Systems is crucial for safe machine operation; all possible sources of risk need to be taken into account in the early design stage. This paper presents a systematic approach to classify failures and to assess the associated risk, and discusses the impact of such considerations on the design of Machine Protection Systems. The application of this approach will be illustrated using the new design of the MPS for LINAC4, a linear accelerator under construction at CERN.CERN-ACC-2013-0067oai:cds.cern.ch:15745792013-07-31
spellingShingle Accelerators and Storage Rings
Apollonio, A
Lallement, J B
Mikulec, B
Puccio, B
Sanchez Alvarez, J L
Schmidt, R
Wagner, S
Reliability Approach for Machine Protection Design in Particle Accelerators
title Reliability Approach for Machine Protection Design in Particle Accelerators
title_full Reliability Approach for Machine Protection Design in Particle Accelerators
title_fullStr Reliability Approach for Machine Protection Design in Particle Accelerators
title_full_unstemmed Reliability Approach for Machine Protection Design in Particle Accelerators
title_short Reliability Approach for Machine Protection Design in Particle Accelerators
title_sort reliability approach for machine protection design in particle accelerators
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1574579
work_keys_str_mv AT apollonioa reliabilityapproachformachineprotectiondesigninparticleaccelerators
AT lallementjb reliabilityapproachformachineprotectiondesigninparticleaccelerators
AT mikulecb reliabilityapproachformachineprotectiondesigninparticleaccelerators
AT pucciob reliabilityapproachformachineprotectiondesigninparticleaccelerators
AT sanchezalvarezjl reliabilityapproachformachineprotectiondesigninparticleaccelerators
AT schmidtr reliabilityapproachformachineprotectiondesigninparticleaccelerators
AT wagners reliabilityapproachformachineprotectiondesigninparticleaccelerators