Cargando…

A high-current, IGBT-based static switch for energy extraction in superconducting power circuits: Concept, design and production of a 30 kA monopolar and a 1 kA bipolar fast opening switches

The steadily increasing demand from the particle physics community for higher beam energies and higher integrated beam luminosity has reinforced the necessity for new accelerator equipment, frequently breaking with conventional technologies. One of the fields where new and innovative engineering is...

Descripción completa

Detalles Bibliográficos
Autores principales: Dahlerup-Petersen, K, Bednarek, M, Coelingh, G J, Dinius, A, Erokhin, A, Favre, M, Siemko, A
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1109/IPMHVC.2016.8012875
http://cds.cern.ch/record/2622105
_version_ 1780958554439548928
author Dahlerup-Petersen, K
Bednarek, M
Coelingh, G J
Dinius, A
Erokhin, A
Favre, M
Siemko, A
author_facet Dahlerup-Petersen, K
Bednarek, M
Coelingh, G J
Dinius, A
Erokhin, A
Favre, M
Siemko, A
author_sort Dahlerup-Petersen, K
collection CERN
description The steadily increasing demand from the particle physics community for higher beam energies and higher integrated beam luminosity has reinforced the necessity for new accelerator equipment, frequently breaking with conventional technologies. One of the fields where new and innovative engineering is required and where interesting developments are ongoing, is the domain of fast switching of high DC currents, such as it is required for rapid and safe extraction of large quantities of energy stored in superconducting magnet circuits. The 30 kA opening switch, developed at CERN within the International High-Luminosity Large Hadron Collider project (HL-LHC), is an example of the innovative engineering required to satisfy the demands related to circuit protection. The paper presents the integration into an IGBT-based static DC switch of a variety of different inspired design principles, such as a triple-busbar layout for optimized circuit symmetry, the extensive use of laminated, water-cooled busbars and an optimized capacitive compensation of the parasitic inductances as well as a complete analysis of the thermal budget management of the individual IGBT modules. The paper will also briefly present the design of a compact modular, bipolar and redundant 1 kA IGBT-based switch assembly which features an all-laminated busbar concept.
id oai-inspirehep.net-1638893
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
record_format invenio
spelling oai-inspirehep.net-16388932022-08-17T12:59:28Zdoi:10.1109/IPMHVC.2016.8012875http://cds.cern.ch/record/2622105engDahlerup-Petersen, KBednarek, MCoelingh, G JDinius, AErokhin, AFavre, MSiemko, AA high-current, IGBT-based static switch for energy extraction in superconducting power circuits: Concept, design and production of a 30 kA monopolar and a 1 kA bipolar fast opening switchesAccelerators and Storage RingsThe steadily increasing demand from the particle physics community for higher beam energies and higher integrated beam luminosity has reinforced the necessity for new accelerator equipment, frequently breaking with conventional technologies. One of the fields where new and innovative engineering is required and where interesting developments are ongoing, is the domain of fast switching of high DC currents, such as it is required for rapid and safe extraction of large quantities of energy stored in superconducting magnet circuits. The 30 kA opening switch, developed at CERN within the International High-Luminosity Large Hadron Collider project (HL-LHC), is an example of the innovative engineering required to satisfy the demands related to circuit protection. The paper presents the integration into an IGBT-based static DC switch of a variety of different inspired design principles, such as a triple-busbar layout for optimized circuit symmetry, the extensive use of laminated, water-cooled busbars and an optimized capacitive compensation of the parasitic inductances as well as a complete analysis of the thermal budget management of the individual IGBT modules. The paper will also briefly present the design of a compact modular, bipolar and redundant 1 kA IGBT-based switch assembly which features an all-laminated busbar concept.oai:inspirehep.net:16388932017
spellingShingle Accelerators and Storage Rings
Dahlerup-Petersen, K
Bednarek, M
Coelingh, G J
Dinius, A
Erokhin, A
Favre, M
Siemko, A
A high-current, IGBT-based static switch for energy extraction in superconducting power circuits: Concept, design and production of a 30 kA monopolar and a 1 kA bipolar fast opening switches
title A high-current, IGBT-based static switch for energy extraction in superconducting power circuits: Concept, design and production of a 30 kA monopolar and a 1 kA bipolar fast opening switches
title_full A high-current, IGBT-based static switch for energy extraction in superconducting power circuits: Concept, design and production of a 30 kA monopolar and a 1 kA bipolar fast opening switches
title_fullStr A high-current, IGBT-based static switch for energy extraction in superconducting power circuits: Concept, design and production of a 30 kA monopolar and a 1 kA bipolar fast opening switches
title_full_unstemmed A high-current, IGBT-based static switch for energy extraction in superconducting power circuits: Concept, design and production of a 30 kA monopolar and a 1 kA bipolar fast opening switches
title_short A high-current, IGBT-based static switch for energy extraction in superconducting power circuits: Concept, design and production of a 30 kA monopolar and a 1 kA bipolar fast opening switches
title_sort high-current, igbt-based static switch for energy extraction in superconducting power circuits: concept, design and production of a 30 ka monopolar and a 1 ka bipolar fast opening switches
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/IPMHVC.2016.8012875
http://cds.cern.ch/record/2622105
work_keys_str_mv AT dahleruppetersenk ahighcurrentigbtbasedstaticswitchforenergyextractioninsuperconductingpowercircuitsconceptdesignandproductionofa30kamonopolaranda1kabipolarfastopeningswitches
AT bednarekm ahighcurrentigbtbasedstaticswitchforenergyextractioninsuperconductingpowercircuitsconceptdesignandproductionofa30kamonopolaranda1kabipolarfastopeningswitches
AT coelinghgj ahighcurrentigbtbasedstaticswitchforenergyextractioninsuperconductingpowercircuitsconceptdesignandproductionofa30kamonopolaranda1kabipolarfastopeningswitches
AT diniusa ahighcurrentigbtbasedstaticswitchforenergyextractioninsuperconductingpowercircuitsconceptdesignandproductionofa30kamonopolaranda1kabipolarfastopeningswitches
AT erokhina ahighcurrentigbtbasedstaticswitchforenergyextractioninsuperconductingpowercircuitsconceptdesignandproductionofa30kamonopolaranda1kabipolarfastopeningswitches
AT favrem ahighcurrentigbtbasedstaticswitchforenergyextractioninsuperconductingpowercircuitsconceptdesignandproductionofa30kamonopolaranda1kabipolarfastopeningswitches
AT siemkoa ahighcurrentigbtbasedstaticswitchforenergyextractioninsuperconductingpowercircuitsconceptdesignandproductionofa30kamonopolaranda1kabipolarfastopeningswitches
AT dahleruppetersenk highcurrentigbtbasedstaticswitchforenergyextractioninsuperconductingpowercircuitsconceptdesignandproductionofa30kamonopolaranda1kabipolarfastopeningswitches
AT bednarekm highcurrentigbtbasedstaticswitchforenergyextractioninsuperconductingpowercircuitsconceptdesignandproductionofa30kamonopolaranda1kabipolarfastopeningswitches
AT coelinghgj highcurrentigbtbasedstaticswitchforenergyextractioninsuperconductingpowercircuitsconceptdesignandproductionofa30kamonopolaranda1kabipolarfastopeningswitches
AT diniusa highcurrentigbtbasedstaticswitchforenergyextractioninsuperconductingpowercircuitsconceptdesignandproductionofa30kamonopolaranda1kabipolarfastopeningswitches
AT erokhina highcurrentigbtbasedstaticswitchforenergyextractioninsuperconductingpowercircuitsconceptdesignandproductionofa30kamonopolaranda1kabipolarfastopeningswitches
AT favrem highcurrentigbtbasedstaticswitchforenergyextractioninsuperconductingpowercircuitsconceptdesignandproductionofa30kamonopolaranda1kabipolarfastopeningswitches
AT siemkoa highcurrentigbtbasedstaticswitchforenergyextractioninsuperconductingpowercircuitsconceptdesignandproductionofa30kamonopolaranda1kabipolarfastopeningswitches