Title :
Comparative Studies Between Classical and Mutually Coupled Switched Reluctance Motors Using Thermal-Electromagnetic Analysis for Driving Cycles
Author :
Li, G.J. ; Ojeda, J. ; Hoang, E. ; Lécrivain, M. ; Gabsi, M.
Author_Institution :
Lab. SATIE, Univ. of Paris XI, Cachan, France
fDate :
4/1/2011 12:00:00 AM
Abstract :
This paper presents copper and iron loss models of a classical switched reluctance motor (SRM) and a mutually coupled switched reluctance motor (MCSRM). The iron losses in different parts of machines are then detailed. Based on the power losses model, a lumped parameter (LP) transient thermal model during driving cycles is performed, the analytical results are validated by the finite-element (FE) transient thermal model. Special attention has been paid to model the salient rotor and a method to transform the salient rotor into a nonsalient one has been proposed. A comparison between the maximum temperatures obtained by using different heat source (average power losses or instantaneous power losses during driving cycles) is given. The experimental tests are also realized to verify the analytical and numerical results.
Keywords :
finite element analysis; reluctance motors; rotors; FEM; classical switched reluctance motor; driving cycles; finite-element model; heat source; instantaneous power losses; lumped parameter transient thermal model; mutually coupled switched reluctance motor; salient rotor; thermal-electromagnetic analysis; Finite-element method (FEM); loss modeling; switched reluctance motor (SRM); thermal analysis; thermal resistance network;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2011.2104968