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Rotary-Linear Switched Reluctance Motor: Analytical and Finite-Element Modeling

机译:旋转线性开关磁阻电动机:分析和有限元建模

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摘要

Rotary-linear switched reluctance motors (RLSRMs) have been introduced to realize simultaneous rotary and linear motions in one structure. This paper proposes the modeling of RLSRM in two manners: analytical and finite-element methods. In the first approach, a model is proposed based on position-wise functions which describe the governing equations of the motor. The derived equations are utilized in a block diagram to comprise the model. In the second approach, static FEA is utilized to improve the former model by obtaining the inductance profile of the motor. The models separate the rotary motion from the linear motion in order to calculate the torque and force. The analytical model is faster than the FEA-based model because of the independency to FEA. However, it is less accurate. The FEA-based model needs prior static FEA and considers the fringing and saturation effects more accurately. The FEA-based model is computationally more efficient than the 3-D transient FEA. The motor's performance parameters obtained via the models versus the 3-D transient FEA as well as the experimental test results indicate the accuracy and efficiency of the proposed models.
机译:引入了旋转线性开关磁阻电机(RLSRM),以在一种结构中实现同时的旋转和线性运动。本文提出了RLSRM建模的两种方式:解析法和有限元法。在第一种方法中,提出了一种基于位置函数的模型,该模型描述了电动机的控制方程。在框图中利用导出的方程式来构成模型。在第二种方法中,静态FEA用于通过获取电动机的电感曲线来改善前一个模型。这些模型将旋转运动与线性运动分开,以便计算扭矩和力。由于与FEA无关,因此分析模型比基于FEA的模型要快。但是,它的准确性较低。基于有限元分析的模型需要先验静态有限元分析,并更精确地考虑边缘效应和饱和效应。基于FEA的模型在计算上比3-D瞬态FEA更有效。通过模型获得的电机性能参数与3D瞬态FEA的对比以及实验测试结果表明了所提出模型的准确性和效率。

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