A hybrid analytical-numerical approach for the analysis of salient-pole synchronous generators with a symmetrical damper cage

The equivalent circuit approach has been widely exploited for the theoretical analysis of electromagnetic devices. However, in the field of classical wound-field synchronous generators, the presence of the damper cage complicates the analysis of such devices and the accurate prediction of the inhere...

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Main Authors: Nuzzo, Stefano, Bolognesi, Paolo, Galea, Michael, Gerada, C.
Format: Conference or Workshop Item
Published: 2017
Subjects:
Online Access:https://eprints.nottingham.ac.uk/48157/
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author Nuzzo, Stefano
Bolognesi, Paolo
Galea, Michael
Gerada, C.
author_facet Nuzzo, Stefano
Bolognesi, Paolo
Galea, Michael
Gerada, C.
author_sort Nuzzo, Stefano
building Nottingham Research Data Repository
collection Online Access
description The equivalent circuit approach has been widely exploited for the theoretical analysis of electromagnetic devices. However, in the field of classical wound-field synchronous generators, the presence of the damper cage complicates the analysis of such devices and the accurate prediction of the inherent induced currents is still matter of ongoing research. 12Focus is given to the accurate prediction of the no-load voltage waveform, by implementing a hybrid analytical-numerical model for a specific alternator.
first_indexed 2025-11-14T20:08:07Z
format Conference or Workshop Item
id nottingham-48157
institution University of Nottingham Malaysia Campus
institution_category Local University
last_indexed 2025-11-14T20:08:07Z
publishDate 2017
recordtype eprints
repository_type Digital Repository
spelling nottingham-481572020-05-04T18:46:29Z https://eprints.nottingham.ac.uk/48157/ A hybrid analytical-numerical approach for the analysis of salient-pole synchronous generators with a symmetrical damper cage Nuzzo, Stefano Bolognesi, Paolo Galea, Michael Gerada, C. The equivalent circuit approach has been widely exploited for the theoretical analysis of electromagnetic devices. However, in the field of classical wound-field synchronous generators, the presence of the damper cage complicates the analysis of such devices and the accurate prediction of the inherent induced currents is still matter of ongoing research. 12Focus is given to the accurate prediction of the no-load voltage waveform, by implementing a hybrid analytical-numerical model for a specific alternator. 2017-05-22 Conference or Workshop Item PeerReviewed Nuzzo, Stefano, Bolognesi, Paolo, Galea, Michael and Gerada, C. (2017) A hybrid analytical-numerical approach for the analysis of salient-pole synchronous generators with a symmetrical damper cage. In: IEEE International Electric Machines and Drives Conference (IEMDC 2017), 21-24 May 2017, Miami, Florida, USA. Analytical modeling; synchronous generators; Damper cage; Equivalent circuits http://ieeexplore.ieee.org/document/8002280/
spellingShingle Analytical modeling; synchronous generators; Damper cage; Equivalent circuits
Nuzzo, Stefano
Bolognesi, Paolo
Galea, Michael
Gerada, C.
A hybrid analytical-numerical approach for the analysis of salient-pole synchronous generators with a symmetrical damper cage
title A hybrid analytical-numerical approach for the analysis of salient-pole synchronous generators with a symmetrical damper cage
title_full A hybrid analytical-numerical approach for the analysis of salient-pole synchronous generators with a symmetrical damper cage
title_fullStr A hybrid analytical-numerical approach for the analysis of salient-pole synchronous generators with a symmetrical damper cage
title_full_unstemmed A hybrid analytical-numerical approach for the analysis of salient-pole synchronous generators with a symmetrical damper cage
title_short A hybrid analytical-numerical approach for the analysis of salient-pole synchronous generators with a symmetrical damper cage
title_sort hybrid analytical-numerical approach for the analysis of salient-pole synchronous generators with a symmetrical damper cage
topic Analytical modeling; synchronous generators; Damper cage; Equivalent circuits
url https://eprints.nottingham.ac.uk/48157/
https://eprints.nottingham.ac.uk/48157/