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Xavier Mininger
Professeur des Universités -
Université Paris-Saclay (IUT de Cachan)
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Documents
Affiliations actuelles
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Présentation
Xavier Mininger was born in 1978, in Strasbourg, France. He received his B.S. and M.S. degrees in electrical engineering from Paris Sud University (now Paris-Saclay), France. He prepared his Ph.D. degree in electrical engineering in 2005 with the Ecole Normale Supérieure de Cachan, Cachan, France in the Systèmes et Applications des Technologies de l’Information et de l’Energie (SATIE) Laboratory. In 2006, he got a position as an Assistant Professor with the IUT of Cachan (Université Paris Sud, now Paris Saclay), Cachan, France, and joined the Laboratoire de Génie Electrique de Paris (LGEP), now GeePs. He was appointed Full Professor in 2013. His main research interests include numerical modeling of multiphysics problems, considering the coupling between magnetic, mechanical, thermal, and fluid flow domains. Applications include models of smart materials (piezoelectric, magnetostrictive, magnetoelectric, ferrofluids, composites), thermomagnetic convection, magnetic shielding, and vibration/noise emission applied to electrical machines.
Xavier Mininger was born in 1978, in Strasbourg, France. He received his B.S. and M.S. degrees in electrical engineering from Paris Sud University (now Paris-Saclay), France. He prepared his Ph.D. degree in electrical engineering in 2005 with the Ecole Normale Supérieure de Cachan, Cachan, France in the Systèmes et Applications des Technologies de l’Information et de l’Energie (SATIE) Laboratory. In 2006, he got a position as an Assistant Professor with the IUT of Cachan (Université Paris Sud, now Paris Saclay), Cachan, France, and joined the Laboratoire de Génie Electrique de Paris (LGEP), now GeePs. He was appointed Full Professor in 2013. His main research interests include numerical modeling of multiphysics problems, considering the coupling between magnetic, mechanical, thermal, and fluid flow domains. Applications include models of smart materials (piezoelectric, magnetostrictive, magnetoelectric, ferrofluids, composites), thermomagnetic convection, magnetic shielding, and vibration/noise emission applied to electrical machines.
Publications
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Modeling of Magnetic Induced Deformation Using Computer Code Chaining and Source Tensor ProjectionIEEE Transactions on Magnetics, 2017, 53 (6), pp.1-4. ⟨10.1109/TMAG.2017.2666421⟩
Article dans une revue
hal-01531198v1
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Vibration Prediction of Non-Oriented Silicon Iron Power Transformer Core under DC BiasCompumag 2017, Jun 2017, Daejeon, South Korea
Communication dans un congrès
hal-01685841v1
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Modeling of Magnetostriction Induced Deformation Using Computer Code Chaining and Equivalent Stress Projection2016 IEEE Conference on Electromagnetic Field Computation (CEFC), Nov 2016, Miami, United States. pp.1-1, ⟨10.1109/CEFC.2016.7816347⟩
Communication dans un congrès
hal-02401868v1
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Modélisation de la déformation de transformateurs de puissance par approche magnéto-mécaniqueCongrès Français de Mécanique 2015, Aug 2015, Lyon, France
Communication dans un congrès
hal-01244953v1
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