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Numerical Modal Analysis of Vibrations in a Three-Phase Linear Switched Reluctance Actuator

机译:三相线性开关磁阻致动器中振动的数值模态分析

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This paper addresses the problem of vibrations produced by switched reluctance actuators, focusing on the linear configuration of this type of machines, aiming at its characterization regarding the structural vibrations. The complexity of the mechanical system and the number of parts used put serious restrictions on the effectiveness of analytical approaches. We build the 3D model of the actuator and use finite element method (FEM) to find its natural frequencies. The focus is on frequencies within the range up to nearly 1.2 kHz which is considered relevant, based on preliminary simulations and experiments. Spectral analysis results of audio signals from experimental modal excitation are also shown and discussed. The obtained data support the characterization of the linear actuator regarding the excited modes, its vibration frequencies, and mode shapes, with high potential of excitation due to the regular operation regimes of the machine. The results reveal abundant modes and harmonics and the symmetry characteristics of the actuator, showing that the vibration modes can be excited for different configurations of the actuator. The identification of the most critical modes is of great significance for the actuators control strategies. This analysis also provides significant information to adopt solutions to reduce the vibrations at the design.
机译:本文针对开关磁阻致动器产生的振动问题进行了研究,着眼于这类电机的线性配置,旨在对其结构振动进行表征。机械系统的复杂性和使用的零件数量严重限制了分析方法的有效性。我们建立了执行器的3D模型,并使用有限元方法(FEM)查找其固有频率。根据初步的模拟和实验,重点关注的频率范围接近1.2 kHz,这被认为是相关的。还显示并讨论了来自实验模态激励的音频信号的频谱分析结果。所获得的数据支持线性致动器关于激励模式,其振动频率和模式形状的表征,由于机器的正常运行方式,具有很高的激励潜力。结果揭示了丰富的模式和谐波以及执行器的对称特性,表明可以针对不同配置的执行器来激发振动模式。确定最关键的模式对于执行器的控制策略具有重要意义。该分析还为采用解决方案以减少设计中的振动提供了重要信息。

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  • 来源
    《Modelling and simulation in engineering》 |2017年第2017期|3258376.1-3258376.18|共18页
  • 作者单位

    Institute de Telecomunicaçoes (IT), Calçada Fonte do Lameiro, 6201-001 Covilha, Portugal,Polytechnic Institute of Castelo Branco, School of Technology, Av. Empresario, S/N, 6000-767 Castelo Branco, Portugal;

    Institute de Telecomunicaçoes (IT), Calçada Fonte do Lameiro, 6201-001 Covilha, Portugal,University of Beira Interior, Faculty of Engineering Calçada Fonte do Lameiro, 6201-001 Covilha, Portugal;

    Institute de Telecomunicaçoes (IT), Calçada Fonte do Lameiro, 6201-001 Covilha, Portugal,University of Beira Interior, Faculty of Engineering Calçada Fonte do Lameiro, 6201-001 Covilha, Portugal;

    University of Beira Interior, Faculty of Engineering Calçada Fonte do Lameiro, 6201-001 Covilha, Portugal,Center for Mechanical and Aerospace Science and Technologies (C-MAST), Calçada Fonte do Lameiro, 6201-001 Covilha, Portugal;

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