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Analysis and design of a magnetically levitated planar motor with multi-layer overlapping windings

机译:具有多层重叠绕组的磁悬浮平面电动机的分析与设计

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A novel permanent magnet planar motor with moving multi-layer overlapping windings is presented in this paper. In the motor, overlapped X and Y windings are divided into four parts. By controlling the currents, normal forces and thrust forces along y and x axes can be adjusted individually to realize 5 degree-of-freedom(DOF) motion with thrust forces uncoupled. And the winding topology can weaken the influence of the end effects of coils without reducing winding utilization. By using surface current method and 3D FEM results, the flux density distribution and force characteristics of the motor are analysis. Based on the relationships between the main dimensions and the forces, the design criteria of the magnetic array and the windings are obtained. The experiments results of a prototype are in good agreement with the result from the analytical and FEM method. The validity of the analysis and simulation is verified.
机译:本文提出了一种新型的带有移动多层交叠绕组的永磁平面电动机。在电动机中,重叠的X和Y绕组分为四个部分。通过控制电流,可以分别调整沿y和x轴的法向力和推力,以实现推力不耦合的5自由度(DOF)运动。绕组拓扑可以在不降低绕组利用率的情况下减弱线圈末端效应的影响。通过使用表面电流方法和3D有限元结果,分析了电机的磁通密度分布和力特性。基于主要尺寸和力之间的关系,获得了磁阵列和绕组的设计标准。原型的实验结果与分析和有限元方法的结果吻合良好。验证了分析和仿真的有效性。

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