Analysis and reduction of electromagnetic vibration in integral-slot PM machine by functional magnet structure

Author:

Wang Yunhao1,Liu Zhiguang2,Yang Zhiyong2

Affiliation:

1. , Yangzhou Polytechnic College, , China

2. , Tianjin University, , China

Abstract

It is significant to balances torque and vibration performance for the surface-mounted permanent magnet (PM) machines. This paper proposes a functional magnet structure to suppress the vibration response of integral-slot surface-mounted PM machines. At the same time, the torque ripple is also greatly reduced without sacrificing the average torque. Firstly, taking the 48-slot/8-pole PM machine as an example, the main sources of the air-gap radial force are analyzed based on the Maxwell stress equation. Thereby, the main PM flux density harmonic components that contribute to the radial force are pointed out. Secondly, the design method of different functional magnet structure is investigated. Then, the effects of different magnet shapes on the torque and vibration performances are compared. The result shows that the proposed sinusoidal+3rd-order harmonic injection functional magnet structure can effectively improve the vibration performance without sacrificing the average torque. Finally, the prototype of the 48-slot/8-pole PM with functional magnet structure is manufactured, and the experiments are carried out for validation.

Publisher

IOS Press

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,Electronic, Optical and Magnetic Materials

Reference25 articles.

1. Influence of contact coefficients on vibrational behavior of PM machines in a complete study;Ennassiri;International Journal of Applied Electromagnetics and Mechanics,2018

2. Optimal control strategy of state feedback control for surface-mounted PMSM drives based on auto-tuning of seeker optimization algorithm;Cao;International Journal of Applied Electromagnetics and Mechanics,2021

3. Triple three-phase permanent magnet synchronous motor with shaped magnets for low vibration applications;Kang;International Journal of Applied Electromagnetics and Mechanics,2022

4. Data-driven electrical machines structural model using the vibration synthesis method;Ciceo;IEEE Transactions on Transportation Electrification,2022

5. Filling force valley with interpoles for pole-frequency vibration reduction in surface-mounted PM synchronous machines;Wang;IEEE Transactions on Industrial Electronics,2020

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