International audienceIn order to predict the lateral rotordynamics of a high-speed induction motor, an optimization procedure is used for identifying the dynamic behavior of the magnetic core made of a lamination stack, tie rods, and short-circuit rods. Modal parameters predicted by a finite-element model based on beam elements and measured on induction motors are included in modal error functions contained in a functional. The minimization of this functional by using the Levenberg-Marquardt algorithm permits extracting the equivalent constitutive properties of the lamination stack for several rotors of different sizes. Finally, the size effect on the constitutive properties identified is discussed
A model of core losses, in which the hysteresis coefficients are variable with the frequency and ind...
CoFe lamination stacks used for high-performance electric motors can be manufactured economically in...
Among the electro-mechanical devices transforming energy from electrical to mechanical, the squirrel...
This Ph.D. thesis deals with the prediction of the dynamic behavior of induction motors and especial...
Cette thèse porte sur la prévision du comportement dynamique en flexion des rotors feuilletés à cage...
Abstract: In several applications, the geometry of induction motor (IM) lamination is not optimized ...
The theoretical part of the bechelors thesis examining the impact of the material of the magnetic ci...
The design of electrical machines is determined by electrical as well as mechanical requirements. Po...
This paper presents a proposed design and analysis of a three-phase squirrel cage induction motor wh...
This paper compares the iron losses generated by the concentrated excitation windings for the axial ...
Two new models for specific power losses in cold-rolled motor lamination steel are described togethe...
Abstract Solid rotors are preferred choice of topology for high-speed applications due to their robu...
This paper discusses the benefits for an Axially Laminated Reluctance (ALAREL) motor deriving from a...
This thesis presents an investigation into advanced squirrel-cage induction machines (IMs), with a p...
The paper investigates the effect of the bar number on the performances of a five-phase squirrel-cag...
A model of core losses, in which the hysteresis coefficients are variable with the frequency and ind...
CoFe lamination stacks used for high-performance electric motors can be manufactured economically in...
Among the electro-mechanical devices transforming energy from electrical to mechanical, the squirrel...
This Ph.D. thesis deals with the prediction of the dynamic behavior of induction motors and especial...
Cette thèse porte sur la prévision du comportement dynamique en flexion des rotors feuilletés à cage...
Abstract: In several applications, the geometry of induction motor (IM) lamination is not optimized ...
The theoretical part of the bechelors thesis examining the impact of the material of the magnetic ci...
The design of electrical machines is determined by electrical as well as mechanical requirements. Po...
This paper presents a proposed design and analysis of a three-phase squirrel cage induction motor wh...
This paper compares the iron losses generated by the concentrated excitation windings for the axial ...
Two new models for specific power losses in cold-rolled motor lamination steel are described togethe...
Abstract Solid rotors are preferred choice of topology for high-speed applications due to their robu...
This paper discusses the benefits for an Axially Laminated Reluctance (ALAREL) motor deriving from a...
This thesis presents an investigation into advanced squirrel-cage induction machines (IMs), with a p...
The paper investigates the effect of the bar number on the performances of a five-phase squirrel-cag...
A model of core losses, in which the hysteresis coefficients are variable with the frequency and ind...
CoFe lamination stacks used for high-performance electric motors can be manufactured economically in...
Among the electro-mechanical devices transforming energy from electrical to mechanical, the squirrel...