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Switched reluctance machine vibration reduction using a vectorial piezoelectric actuator control
Author(s) -
X. Ojeda,
Hala Hannoun,
Xavier Mininger,
Mickaël Hilairet,
Mohamed Gabsi,
Claude Marchand,
M. Lécrivain
Publication year - 2009
Publication title -
the european physical journal applied physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.216
H-Index - 49
eISSN - 1286-0050
pISSN - 1286-0042
DOI - 10.1051/epjap/2009106
Subject(s) - stator , control theory (sociology) , switched reluctance motor , vibration , acceleration , actuator , reduction (mathematics) , controller (irrigation) , magnetic reluctance , noise (video) , reluctance motor , vibration control , noise reduction , engineering , acoustics , computer science , physics , control (management) , magnet , mathematics , rotor (electric) , mechanical engineering , electrical engineering , biology , agronomy , classical mechanics , geometry , artificial intelligence , image (mathematics)
International audienceThis paper deals with an original approach of the Switched Reluctance Machine (SRM) control for the purpose of reducing stator vibrations. Two combined approaches are studied in the aim of reducing the vibratory acceleration generated and thus the acoustic noise. The first one is based on a sinusoidal control of the magnetic phase current and the second one, on an optimal control of piezoelectric actuators (PZT) stuck on the SRM stator. The sinusoidal control of the magnetic phase current introduces properties on the vibratory acceleration distribution that are used to design an original actuator controller. Principles and viability of these combined vibration damping methods are deduced from theories and experiments

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