Advanced Course on Thermal Analysis and Design of Induction Motors

Abstract: This course covers the thermal analysis of an induction motor using a powerful, dual-method approach. The study begins by developing an analytical model, a Lumped Parameter Thermal Network (LPTN), which is then implemented in MATLAB. Subsequently, the results from the LPTN are validated against numerical simulations performed using Computational Fluid Dynamics (CFD) in ANSYS

Induction Motors Drive and Control

Enroll Live Course Course Contents Review of the specifications of the benchmark motors Review of the two-axis model of the induction motor Dynamic simulation using Simplorer & Maxwell Dynamic simulation using MATLAB Common aspects in all electric motor drives Control of DC motor as an example Single-phase inverter topics Three-phase inverter topics (SPWM, SVPWM) Getting

Magnetic Equivalent Circuit (MEC) Analysis of Induction Motors

Register This Course Register This Course Abstract: Magnetic Equivalent Circuit (MEC) Analysis of Induction Motors Course Contents: Discussing the finite element model of the benchmark induction motor. Generation of the MEC model of the induction motor using ANSYS Simplorer, MATLAB, or Python. The software tool is up to you. Derivation of static and dynamic characteristics

Axial-Flux Induction Motor Design Course

In this course, we will follow the electromagnetic design of three case-study motors: Axial-flux induction motor (Double stator) Axial-flux induction motor (Double rotor) Axial-flux induction motor (Single stator and single rotor) In these examples, we will do analytic and finite element analysis. Please let me know if you have any questions via the following link: