Abstract
Based on the winding function considering the slot width and the air-gap permeability considering the slot opening width, the main radial electromagnetic force wave expressions of the induction motor are determined. The electromagnetic force-vibration prediction model of the induction motor is established. The natural frequency and acoustic radiation model of a finite-length cylindrical shell with two ends clamped is deduced. On this basis, an improved magnetic noise prediction model of cage induction motor is improved, which can calculate the combined effects of electromagnetic force on the axis and circumferential modes of the stator system. Aiming at two different noise reduction targets, an optimization method is proposed to reduce the overall electromagnetic noise of the motor without sacrificing efficiency and output torque. The feasibility of the model for electromagnetic noise prediction is verified by finite element simulation and experiments. For a 30/26 slots five-phase induction motor, low-noise analysis and optimization schemes of the opening width for two different targets are given. The results show that the larger slot opening scheme can also result in less magnetic noise for the right selection, which is contrary to the common design rule that recommends minimizing slot opening to reduce magnetic noise.
Subject
Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering
Reference25 articles.
1. Principe of Magnetic Noise Active Reduction Using Three Phase Systems Due to PWM Inverter Switching;Corton;Proceedings of the 2nd International Seminar on Vibrations and Acoustic Noise of Electric Machinery (VANEM),2000
2. Magnetic noise reduction of induction machines
3. Active Reduction of Magnetic Noise in Asynchronous Machine Controlled by Stator Current Harmonics;Belkhayat;Proceedings of the 1997 Eighth International Conference on (Conf. Publ. No. 444),1997
4. A Unified Fault-tolerant Control for 15-phase Induction Machine Under Various Phase Failure Conditions;Liu;Proc. CSEE,2019
5. Research on Noise Reduction of 3.6 MW Evaporative Cooling Wind Motor Induced by Electromagnetic and Two-Phase Flow Resonance Based on Stator Optimization
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