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Distributed model for electromechanical interaction in rotordynamics of cage rotor electrical machines

机译:笼型转子电机的转子动力学中机电相互作用的分布式模型

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摘要

In this work the effects of the electromechanical interaction on rotordynamics and vibration characteristics of cage rotor electrical machines were considered. An eccentric rotor motion distorts the electromagnetic field in the air-gap between the stator and rotor inducing a total force, the unbalanced magnetic pull, exerted on the rotor. In this paper a low-order parametric model for the unbalanced magnetic pull is coupled with a three-dimensional finite element structural model of the electrical machine. The main contribution of the work is to present a computationally efficient electromechanical model for vibration analysis of cage rotor machines. In this model, the interaction between the mechanical and electromagnetic systems is distributed over the air gap of the machine. This enables the inclusion of rotor and stator deflections into the analysis and, thus, yields more realistic prediction for the effects of electromechanical interaction. The model was tested by implementing it for two electrical machines with nominal speeds close to one of the rotor bending critical speeds. Rated machine data was used in order to predict the effects of the electromechanical interaction on vibration characteristics of the example machines. (c) 2007 Elsevier Ltd. All rights reserved.
机译:在这项工作中,考虑了机电相互作用对笼式转子电机的转子动力学和振动特性的影响。转子的偏心运动会使定子和转子之间的气隙中的电磁场变形,从而产生一个总力,即施加在转子上的不平衡磁拉力。在本文中,针对不平衡磁拉力的低阶参数模型与电机的三维有限元结构模型耦合。这项工作的主要贡献是提出了一种计算有效的机电模型,用于笼式转子机器的振动分析。在此模型中,机械和电磁系统之间的相互作用分布在机器的气隙上。这样就可以将转子和定子的挠度纳入分析范围,从而对机电相互作用的影响做出更实际的预测。通过在两台额定转速接近转子弯曲临界转速之一的电机上实施该模型,对该模型进行了测试。使用额定的机器数据来预测机电相互作用对示例机器的振动特性的影响。 (c)2007 Elsevier Ltd.保留所有权利。

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