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On $V_{ce}$ Method: In Situ Temperature Estimation and Aging Detection of High-Current IGBT Modules Used in Magnet Power Supplies for Particle Accelerators

Magnet power supplies used in particle accelerators are a specialized application of power electronics that require long lifetime operation with no unscheduled interruptions and high output current precision. In this paper, the $V_{ce}$ method with sensing current is considered for the estimation of...

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Autores principales: Asimakopoulos, Panagiotis, Papastergiou, Konstantinos, Thiringer, Torbjorn, Bongiorno, Massimo, Le Godec, Gilles
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1109/tie.2018.2823689
http://cds.cern.ch/record/2759056
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author Asimakopoulos, Panagiotis
Papastergiou, Konstantinos
Thiringer, Torbjorn
Bongiorno, Massimo
Le Godec, Gilles
author_facet Asimakopoulos, Panagiotis
Papastergiou, Konstantinos
Thiringer, Torbjorn
Bongiorno, Massimo
Le Godec, Gilles
author_sort Asimakopoulos, Panagiotis
collection CERN
description Magnet power supplies used in particle accelerators are a specialized application of power electronics that require long lifetime operation with no unscheduled interruptions and high output current precision. In this paper, the $V_{ce}$ method with sensing current is considered for the estimation of the junction temperature and the aging detection of high-current insulated gate bipolar transistor (IGBT) modules used in this specialized application. First, sensitivity analysis of the sensing current and the gate– emitter voltage are documented to quantify their impact on the precision of the $V_{ce}$ method for high-current modules independently of the application of interest. Two measuring circuits offering ease of calibration and reduced number of components are proposed but their applicability is not limited to this application. Their performance is tested on a 1.6 kA IGBT module that exhibits the highest current ratings documented for the $V_{ce}$ method with sensing current. The test is carried out at a switching frequency of 6.5 kHz using an experimental set-up that emulates a phase leg of the considered power supply. The $V_{ce}$ method with sensing current is evaluated for the aging detection of high-current IGBT modules in general and its effectiveness for the specialized application is verified experimentally.
id oai-inspirehep.net-1851983
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
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spelling oai-inspirehep.net-18519832021-06-21T13:37:11Zdoi:10.1109/tie.2018.2823689http://cds.cern.ch/record/2759056engAsimakopoulos, PanagiotisPapastergiou, KonstantinosThiringer, TorbjornBongiorno, MassimoLe Godec, GillesOn $V_{ce}$ Method: In Situ Temperature Estimation and Aging Detection of High-Current IGBT Modules Used in Magnet Power Supplies for Particle AcceleratorsDetectors and Experimental TechniquesAccelerators and Storage RingsMagnet power supplies used in particle accelerators are a specialized application of power electronics that require long lifetime operation with no unscheduled interruptions and high output current precision. In this paper, the $V_{ce}$ method with sensing current is considered for the estimation of the junction temperature and the aging detection of high-current insulated gate bipolar transistor (IGBT) modules used in this specialized application. First, sensitivity analysis of the sensing current and the gate– emitter voltage are documented to quantify their impact on the precision of the $V_{ce}$ method for high-current modules independently of the application of interest. Two measuring circuits offering ease of calibration and reduced number of components are proposed but their applicability is not limited to this application. Their performance is tested on a 1.6 kA IGBT module that exhibits the highest current ratings documented for the $V_{ce}$ method with sensing current. The test is carried out at a switching frequency of 6.5 kHz using an experimental set-up that emulates a phase leg of the considered power supply. The $V_{ce}$ method with sensing current is evaluated for the aging detection of high-current IGBT modules in general and its effectiveness for the specialized application is verified experimentally.oai:inspirehep.net:18519832019
spellingShingle Detectors and Experimental Techniques
Accelerators and Storage Rings
Asimakopoulos, Panagiotis
Papastergiou, Konstantinos
Thiringer, Torbjorn
Bongiorno, Massimo
Le Godec, Gilles
On $V_{ce}$ Method: In Situ Temperature Estimation and Aging Detection of High-Current IGBT Modules Used in Magnet Power Supplies for Particle Accelerators
title On $V_{ce}$ Method: In Situ Temperature Estimation and Aging Detection of High-Current IGBT Modules Used in Magnet Power Supplies for Particle Accelerators
title_full On $V_{ce}$ Method: In Situ Temperature Estimation and Aging Detection of High-Current IGBT Modules Used in Magnet Power Supplies for Particle Accelerators
title_fullStr On $V_{ce}$ Method: In Situ Temperature Estimation and Aging Detection of High-Current IGBT Modules Used in Magnet Power Supplies for Particle Accelerators
title_full_unstemmed On $V_{ce}$ Method: In Situ Temperature Estimation and Aging Detection of High-Current IGBT Modules Used in Magnet Power Supplies for Particle Accelerators
title_short On $V_{ce}$ Method: In Situ Temperature Estimation and Aging Detection of High-Current IGBT Modules Used in Magnet Power Supplies for Particle Accelerators
title_sort on $v_{ce}$ method: in situ temperature estimation and aging detection of high-current igbt modules used in magnet power supplies for particle accelerators
topic Detectors and Experimental Techniques
Accelerators and Storage Rings
url https://dx.doi.org/10.1109/tie.2018.2823689
http://cds.cern.ch/record/2759056
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