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Model for Electromagnetic Actuator With Significant Fringing Using Minimal Fitting Parameters

机译:最小拟合参数的大边缘电磁致动器模型

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In a number of electromagnetic actuators, the stator and translator are structured to create highly nonlinear fringing flux to generate force that varies linearly with displacement. Reliable prediction of such force requires an accurate model for the fringing flux. Assuming that saturation is neglected and the fringings are elliptical, a reluctance model for fringing flux is derived that depends on displacement, material properties, and one tuning parameter describing the shape of the ellipse. Fringing-related reluctances are assembled with the reluctances of the regions with linear flux to predict magnetic field, energy, and force. Upon tuning, the force predicted by the model is within 10% of the simulated and measured forces.
机译:在许多电磁执行器中,定子和转换器的结构可产生高度非线性的边缘磁通,以产生随位移线性变化的力。可靠地预测这种力需要精确的边缘流模型。假设饱和度被忽略,并且条纹为椭圆形,则导出了用于条纹磁通的磁阻模型,该模型取决于位移,材料特性以及描述椭圆形状的一个调整参数。与边缘相关的磁阻与线性磁通量区域的磁阻结合在一起,以预测磁场,能量和力。调整后,模型预测的力在模拟和测量力的10%以内。

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