Title :
Acoustic Simulation of a Special Switched Reluctance Drive by Means of Field–Circuit Coupling and Multiphysics Simulation
Author :
van der Giet, M. ; Lange, E. ; Corrêa, D. A P ; Chabu, I.E. ; Nabeta, S.I. ; Hameyer, K.
Author_Institution :
Inst. of Electr. Machines, RWTH Aachen Univ., Aachen, Germany
Abstract :
The approach presented in this paper consists of an energy-based field-circuit coupling in combination with multiphysics simulation of the acoustic radiation of electrical machines. The proposed method is applied to a special switched reluctance motor with asymmetric pole geometry to improve the start-up torque. The pole shape has been optimized, subject to low torque ripple, in a previous study. The proposed approach here is used to analyze the impact of the optimization on the overall acoustic behavior. The field-circuit coupling is based on a temporary lumped-parameter model of the magnetic part incorporated into a circuit simulation based on the modified nodal analysis. The harmonic force excitation is calculated by means of stress tensor computation, and it is transformed to a mechanical mesh by mapping techniques. The structural dynamic problem is solved in the frequency domain using a finite-element modal analysis and superposition. The radiation characteristic is obtained from boundary element acoustic simulation. Simulation results of both rotor types are compared, and measurements of the drive are presented.
Keywords :
acoustic noise; reluctance motor drives; acoustic radiation; acoustic simulation; energy-based field-circuit coupling; field-circuit coupling; mapping techniques; multiphysics simulation; special switched reluctance drive; start-up torque; stress tensor; structural dynamic problem; Acoustic noise of electrical machines; field–circuit coupling numerical simulation; finite-element method (FEM); switched reluctance motor (SRM);
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2010.2051935