Radial force control for triple three-phase sectored SPM machines. Part I: Machine model

The radial force control technique for a triple three-phase Surface Permanent Magnet (SPM) machine is investigated in this paper. The machine has a nine-phase winding arranged in three sectors and supplied by three different Voltage Source Inverters (VSI). A machine model is developed, based on the...

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Main Authors: Sala, Giacomo, Gerada, David, Gerada, C., Tani, A.
Format: Conference or Workshop Item
Published: 2017
Subjects:
Online Access:https://eprints.nottingham.ac.uk/45288/
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author Sala, Giacomo
Gerada, David
Gerada, C.
Tani, A.
author_facet Sala, Giacomo
Gerada, David
Gerada, C.
Tani, A.
author_sort Sala, Giacomo
building Nottingham Research Data Repository
collection Online Access
description The radial force control technique for a triple three-phase Surface Permanent Magnet (SPM) machine is investigated in this paper. The machine has a nine-phase winding arranged in three sectors and supplied by three different Voltage Source Inverters (VSI). A machine model is developed, based on the multi space vector approach. The multi space vector current control technique is exploited to control the torque and the radial force. The radial force control can be useful to compensate for a bearing fault or for a rotor eccentricity. Finite element simulations are used to validate the model and the control technique. Finally, criticalities of the control and modelling aspects are discussed.
first_indexed 2025-11-14T19:58:35Z
format Conference or Workshop Item
id nottingham-45288
institution University of Nottingham Malaysia Campus
institution_category Local University
last_indexed 2025-11-14T19:58:35Z
publishDate 2017
recordtype eprints
repository_type Digital Repository
spelling nottingham-452882020-05-04T18:42:27Z https://eprints.nottingham.ac.uk/45288/ Radial force control for triple three-phase sectored SPM machines. Part I: Machine model Sala, Giacomo Gerada, David Gerada, C. Tani, A. The radial force control technique for a triple three-phase Surface Permanent Magnet (SPM) machine is investigated in this paper. The machine has a nine-phase winding arranged in three sectors and supplied by three different Voltage Source Inverters (VSI). A machine model is developed, based on the multi space vector approach. The multi space vector current control technique is exploited to control the torque and the radial force. The radial force control can be useful to compensate for a bearing fault or for a rotor eccentricity. Finite element simulations are used to validate the model and the control technique. Finally, criticalities of the control and modelling aspects are discussed. 2017-04-20 Conference or Workshop Item PeerReviewed Sala, Giacomo, Gerada, David, Gerada, C. and Tani, A. (2017) Radial force control for triple three-phase sectored SPM machines. Part I: Machine model. In: 2017 IEEE Workshop on Electrical Machines Design, Control and Diagnosis (WEMDCD 2017), 20-21 April 2017, Nottingham, UK. Analytical models brushless machines fault tolerance fault tolerant systems force force control machine vector control permanent magnet machines. http://ieeexplore.ieee.org/document/7947746/
spellingShingle Analytical models
brushless machines
fault tolerance
fault tolerant systems
force
force control
machine vector control
permanent magnet machines.
Sala, Giacomo
Gerada, David
Gerada, C.
Tani, A.
Radial force control for triple three-phase sectored SPM machines. Part I: Machine model
title Radial force control for triple three-phase sectored SPM machines. Part I: Machine model
title_full Radial force control for triple three-phase sectored SPM machines. Part I: Machine model
title_fullStr Radial force control for triple three-phase sectored SPM machines. Part I: Machine model
title_full_unstemmed Radial force control for triple three-phase sectored SPM machines. Part I: Machine model
title_short Radial force control for triple three-phase sectored SPM machines. Part I: Machine model
title_sort radial force control for triple three-phase sectored spm machines. part i: machine model
topic Analytical models
brushless machines
fault tolerance
fault tolerant systems
force
force control
machine vector control
permanent magnet machines.
url https://eprints.nottingham.ac.uk/45288/
https://eprints.nottingham.ac.uk/45288/