Vibration Analysis and Optimization of Permanent Magnet Motor Based on Mode Programme Method

Kai Hu, Guangming Zhang, Wenyi Zhang

Research output: Contribution to journalConference articlepeer-review

Abstract

Aiming at optimizing the vibration of the permanent magnet motor, the vibration performance of the permanent magnet motor was analyzed and optimized based on the mode program in this paper. A new kind of permanent magnet motor was designed. The radial electromagnetic force is larger under 256.8 Hz and does not exceed 7.1 kPa at frequencies above 577.8 Hz. Then the mode program by response surface method was conducted and its goal was to make the first-order inherent frequency greater than 577.8 Hz. The inner diameter, outer diameter, and length of the motor housing are selected as optimization factors. The first-order and the second-order inherent frequency of the designed permanent magnet motor housing are used as the optimization objectives. The average error rate of the regression equations of the first and second-order inherent frequency is only 0.76% and 0.88%, respectively. At last, the optimal scheme was put forward. The inner diameter, outer diameter, and length of the motor housing are 115.0 mm, 140.8 mm, and 160.0 mm are the optimal solution. The optimized first and second-order inherent frequency is 605.43 Hz and 1490.3 Hz, respectively. It is effective to weaken vibration and avoid resonance.

Original languageEnglish
Article number012028
JournalJournal of Physics: Conference Series
Volume2666
Issue number1
DOIs
StatePublished - 2023
Event2023 3rd International Conference on Electrical Engineering and Computer Technology, ICEECT 2023 - Virtual, Online, China
Duration: 22 Sep 202324 Sep 2023

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