Vibration analysis of electric motors considering rotating rotor structure using flexible multibody dynamics-electromagnetic-structural vibration coupled analysis

Author:

Cho Seunghyeon1,Jeon Kyunghun1,Kim Chang-Wan2ORCID

Affiliation:

1. Graduate School of Mechanical Design & Production Engineering, Konkuk University , Seoul 05029, Republic of Korea

2. School of Mechanical Engineering, Konkuk University , 120, Neungdong-ro, Gwangjin-gu, Seoul 05029, Republic of Korea

Abstract

AbstractIn this study, we develop flexible multibody dynamic-electromagnetic-structural vibration coupled analysis method to accurately predict motor vibration by considering the electromagnetic force characteristics, rotating characteristics of rotating motor motors, and their interactions at the no-load rated speed and operating speed range. The structural characteristics are accurately reflected by developing a three-dimensional (3D) finite element model considering the entire components of the motor. The reliability of the 3D finite element model of the motor is verified using the impact hammer test. In addition, to consider the rotational characteristics of the rotor structure, we develop a flexible multibody dynamics model that connects the flexible rotor and the bearing with revolute joint. The vibration of the motor at the no-load rated speed is analyzed using flexible multibody dynamics-electromagnetic-structural vibration coupled analysis. Comparing the vibration test results, it is confirmed that the flexible multibody dynamics-electromagnetic-structural vibration coupled analysis result predicts the actual motor vibration more accurately than the conventional finite element analysis-based electromagnetic-structural vibration coupled analysis result. By using flexible multibody dynamics-electromagnetic-structural vibration coupled analysis in the operating speed range, it is confirmed that not only electromagnetic force harmonics but also sideband harmonics caused by rotor eccentricity-induced large vibrations, and also confirmed that it accurately predicts the vibration characteristics of actual motors with rotating rotors.

Funder

Konkuk University

Publisher

Oxford University Press (OUP)

Subject

Computational Mathematics,Computer Graphics and Computer-Aided Design,Human-Computer Interaction,Engineering (miscellaneous),Modeling and Simulation,Computational Mechanics

Reference23 articles.

1. A study on vibration characteristics of brushless DC motor by electromagnetic-structural coupled analysis using entire finite element model;Cho;IEEE Transactions on Energy Conversion,2018

2. Electromagnetic force induced structural vibration analysis and experiment of brushless direct current motors for operating speed range;Cho;Applied Sciences,2022

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4. Noise of Polyphase Electric Motors

5. Piecewise stagger poles with continuous skew edge for vibration reduction in surface-mounted PM synchronous machines;Hong;IEEE Transactions on Industrial Electronics,2020

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