Datum
2017Schlagwort
620 Ingenieurwissenschaften Bürstenloser GleichstrommotorMehrphasenmaschineInduktive KopplungStromregelungSliding-ModeZeitdiskretes RegelungssystemStörungBeobachter <Kybernetik>FehlertoleranzRobuste RegelungMetadata
Zur Langanzeige
Buch
Discrete time sliding mode control strategies applied to a multiphase brushless DC machine
Zusammenfassung
Nowadays, environmental issues motivates the replacement of mechanical, hydraulic and pneumatic system by electrical system in the transport sector aiming to reduce emissions generated by burning of fossil fuels in vehicles. The electrical system must ensure high electrical efficiency and should not exceed the weight of the substituted components. To attend these high performance requirements a fault-tolerant multiphase brushless DC machine was chosen for this research.The present work introduces a six-phase 600W brushless DC machine with 8 poles. The main challenge for the control issues of this machine is the mutual magnetic coupling between the phases due to the wave winding machine configuration. In this context, theoretical and practical investigations of different current control strategies based on the sliding mode control approach applied to the six-phase brushless DC machine are presented.
Zusätzliche Informationen
Zugleich: Dissertation, Universität Kassel, 2017Zitieren
@book{doi:10.19211/KUP9783737603195,
urn:nbn:de:0002-403193,
author={Godoi Dias, Milena Sabrina},
title={Discrete time sliding mode control strategies applied to a multiphase brushless DC machine},
publisher={kassel university press},
year={2017}
}
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2023-04-21T15:43:49Z 2023-04-21T15:43:49Z 2017 doi:10.19211/KUP9783737603195 978-3-7376-0319-5 (e-book) urn:nbn:de:0002-403193 http://hdl.handle.net/123456789/14619 Zugleich: Dissertation, Universität Kassel, 2017 eng kassel university press Urheberrechtlich geschützt https://rightsstatements.org/page/InC/1.0/ 620 Discrete time sliding mode control strategies applied to a multiphase brushless DC machine Buch Nowadays, environmental issues motivates the replacement of mechanical, hydraulic and pneumatic system by electrical system in the transport sector aiming to reduce emissions generated by burning of fossil fuels in vehicles. The electrical system must ensure high electrical efficiency and should not exceed the weight of the substituted components. To attend these high performance requirements a fault-tolerant multiphase brushless DC machine was chosen for this research.The present work introduces a six-phase 600W brushless DC machine with 8 poles. The main challenge for the control issues of this machine is the mutual magnetic coupling between the phases due to the wave winding machine configuration. In this context, theoretical and practical investigations of different current control strategies based on the sliding mode control approach applied to the six-phase brushless DC machine are presented. open access Godoi Dias, Milena Sabrina 2017-01-20 xiv, 178 Seiten Kassel, Universität Kassel, Fachbereich Elektrotechnik / Informatik Zacharias, Peter (Prof. Dr.) Vieira, Rodrigo Padilha (Prof. Dr.) Kassel 978-3-7376-0318-8 (print) Bürstenloser Gleichstrommotor Mehrphasenmaschine Induktive Kopplung Stromregelung Sliding-Mode Zeitdiskretes Regelungssystem Störung Beobachter <Kybernetik> Fehlertoleranz Robuste Regelung publishedVersion Elektrische Energiesysteme Band 14 true Elektrische Energiesysteme Naturwissenschaft, Technik, Informatik, Medizin Dissertation FB 16 / Elektrotechnik / Informatik true Softcover DIN A5
Die folgenden Lizenzbestimmungen sind mit dieser Ressource verbunden:
:Urheberrechtlich geschützt