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首页> 外文期刊>IEEE Transactions on Magnetics >Radial Force and Vibration Calculation for Modular Permanent Magnet Synchronous Machine With Symmetrical and Asymmetrical Open-Circuit Faults
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Radial Force and Vibration Calculation for Modular Permanent Magnet Synchronous Machine With Symmetrical and Asymmetrical Open-Circuit Faults

机译:具有对称和非对称开路故障的模块化永磁同步电机的径向力和振动计算

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摘要

This paper studies the radial force and vibration performance of the modular three-phase permanent magnet synchronous machine under typical two-phase open-circuit faults: symmetrical and asymmetrical. First of all, the expressions of armature magnetomotive force are formalized in normal and fault conditions; thus, the air-gap magnetic fields and radial force density can be analyzed theoretically. Second, the theoretical analysis is verified by running the finite-element simulation of a four-unit modular machine. The relationship between the fault types and radial force harmonic contents is also discussed with the help of 2-D fast Fourier transform. This is followed by the transient and harmonic structural analysis, with the exciting forces imposed on the stator system in order to get the acceleration response. The simulation results are validated by vibration measurement experiments of a similar small-sized modular motor. This investigation can instruct the designer to lower the modular machine's vibration under different fault conditions.
机译:本文研究了模块化三相永磁同步电机在典型的两相开路故障(对称和不对称)下的径向力和振动性能。首先,在正常和故障条件下,将电枢磁势的表达式形式化;因此,可以从理论上分析气隙磁场和径向力密度。其次,通过运行四单元模块化机器的有限元仿真来验证理论分析。借助二维快速傅立叶变换,还讨论了故障类型与径向力谐波含量之间的关系。随后进行瞬态和谐波结构分析,并在定子系统上施加激振力以获得加速度响应。通过类似的小型模块化电动机的振动测量实验验证了仿真结果。该调查可以指导设计人员降低在不同故障条件下模块化机器的振动。

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