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Analysis of Vibration in Modular Fault-tolerant PMSM under One-phase Open-circuit Fault

机译:单相开路故障下模块化容错PMSM振动分析

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Fault-tolerant permanent magnet synchronous machine with modular structure has become a research hotspot in the field of electric vehicles. Based on the fault conditions it may be faced with, this paper investigates the effect the one-phase open-circuit fault will have on the radial force density and vibration performance compared with normal condition. Firstly, the paper introduces the modular fault-tolerant topology. Secondly, based on Maxwell stress tensor method, the theoretical analysis of the air-gap magnetic fields and radial force density under open-circuit fault is proposed, and the additional harmonic components are listed. With the help of the finite element analysis, simulation results are given to verify the theoretical analysis. Finally, through the acceleration response and its harmonic spectrum, we can get explicit results of vibration characteristic. These results can help analyze and mitigate the modular machine's vibration in the engineering practice.
机译:具有模块化结构的容错永磁同步机已成为电动汽车领域的研究热点。基于可能面临的故障条件,本文调查了与正常情况相比,单相开关故障的辐射力密度和振动性能的影响。首先,本文介绍了模块化容错拓扑。其次,基于Maxwell Regress Tensor方法,提出了开路故障下的气隙磁场和径向力密度的理论分析,并且列出了附加的谐波分量。在有限元分析的帮助下,给出了仿真结果来验证理论分析。最后,通过加速响应及其谐波谱,我们可以明确振动特性的结果。这些结果可以帮助分析和减轻工程实践中的模块化机器的振动。

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