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The Optimal Design of Real Time Control Precision of Planar Motor

机译:平面电机实时控制精度的优化设计

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摘要

In this paper, the Halbach permanent magnet array with 2 segments per pole is selected for analysis. The harmonics that the harmonic numbers for the( l)x- and( l)y-direction in local coordinate system are equal to each other arc set as a pair for transformation. Then the expressions of the magnetic flux density distribution of the Halbach array in global coordinate system are derived. The dimensions of the coil are parameterized. The force and torque exerted on the Halbach array by acoil are calculated by Lorentz force law. The first three harmonics are chosen for real time control by analyzing the ratio of each harmonic in the total harmonics. The harmonic model has good performance on torque by comparing with the models used before. As for the force, the errors can be significantly reduced by optimizing the parameterized dimensions of coil because of the cosine or sine form error figures. The optimized model has good precision on both force and torque. The same method can be applied on the Halbach permanent magnet array with different segments per pole.
机译:在本文中,选择了每极2个分段的Halbach永磁体阵列进行分析。在局部坐标系中,(l)x和(l)y方向的谐波数彼此相等的谐波被设置为一对以进行变换。然后推导了整体坐标系中Halbach阵列磁通密度分布的表达式。线圈的尺寸已参数化。通过洛仑兹力定律计算出由线圈施加在Halbach阵列上的力和转矩。通过分析每个谐波在总谐波中的比率,选择前三个谐波进行实时控制。与以前使用的模型相比,谐波模型在转矩方面具有良好的性能。至于力,由于余弦或正弦形式的误差值,可以通过优化线圈的参数化尺寸来显着减少误差。优化的模型在力和扭矩上都具有良好的精度。可以将相同的方法应用于每个磁极具有不同分段的Halbach永磁体阵列。

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