首页> 外文会议>Industry Applications Conference, 1996. Thirty-First IAS Annual Meeting, IAS '96., Conference Record of the 1996 IEEE >Calculation of the electromagnetic parameters of a switched reluctance motor using an improved FEM-BIEM. Application to different models for the torque calculation
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Calculation of the electromagnetic parameters of a switched reluctance motor using an improved FEM-BIEM. Application to different models for the torque calculation

机译:使用改进的FEM-BIEM计算开关磁阻电机的电磁参数。应用于不同型号的扭矩计算

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This paper expands on a hybrid numerical method coupling the finite element method (FEM) and the boundary integral equation method (BIEM) developed to calculate magnetic fields in a switched reluctance motor (SRM). This hybrid approach is a solution to the issues stemming from the small size and odd shape of the SRM airgap, where meshing a FEM grid is difficult. In the past, the stator and rotor FEM domains kept their actual shapes, which resulted in problems with the definition of the unit outward normal vector n~ at the corner points of the SRM poles. So, the normal derivative of the magnetic vector potential, that is the tangential component of the flux density, was undefined at these points. In this paper, a new approach with new definitions of the stator and rotor FEM domains is presented. The new concept defines the SRM airgap as a ring in which circular boundaries permit the correct definition of the normal derivative quantities and exploits the natural Neumann condition. The electromagnetic parameters of a 7.5 kW SRM prototype machine were calculated using this new approach. They compare favorably with test data. Phase magnetization characteristics also have good precision and smoothness. These electromagnetic parameters were then used to assess and compare two different SRM models for the calculation of the torque on the motor shaft: the linear trapezoidal model; and the nonlinear model. The comparison between the measured torque and the torque as calculated with the two different models shows that the more simple trapezoidal model should be satisfactory in many cases, and could in particular be used in automated SRM designs.
机译:本文扩展了一种混合数值方法,该方法结合了有限元方法(FEM)和边界积分方程方法(BIEM),用于计算开关磁阻电机(SRM)中的磁场。这种混合方法是解决因SRM气隙尺寸小和形状奇特而导致的问题的解决方案,在这些网格中,很难将FEM网格划分为网格。过去,定子和转子的有限元域保持其实际形状,这导致在SRM磁极的角点处定义单位向外法向矢量n〜的问题。因此,在这些点上,磁矢量势的正态导数(即磁通密度的切向分量)是不确定的。在本文中,提出了一种具有定子和转子有限元域的新定义的新方法。新概念将SRM气隙定义为环,其中圆形边界允许正确定义正态导数并利用自然诺伊曼条件。使用这种新方法可以计算出7.5 kW SRM原型机的电磁参数。它们与测试数据相比具有优势。相磁化特性也具有良好的精度和平滑度。然后将这些电磁参数用于评估和比较两个不同的SRM模型,以计算电动机轴上的扭矩:线性梯形模型;线性梯形模型;线性梯形模型;线性梯形模型。和非线性模型。比较所测得的转矩和使用两个不同模型计算出的转矩,可以看出,在许多情况下,更简单的梯形模型应该令人满意,尤其可以用于自动SRM设计中。

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