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A novel linear-rotary permanent-magnet actuator using interlaced poles

机译:一种使用交错磁极的新型线性旋转永磁致动器

摘要

This paper proposes a novel linear-rotary permanent-magnet actuator (LRPMA) with interlaced poles, which has the merit of using only 50% of the neodymium-iron-boron permanent magnets when compared with those used in traditional Halbach structure. By assuming the stator is slotless, the magnetic field distribution of the LRPMA is initially analyzed using the magnetic scalar potential in the Cartesian coordinate system. A method for calculating the relative permeance by Schwarz-Christoffel transformation (SCT) is subsequently deduced to analyze the magnetic field in detail and predict the cogging force/torque of LRPMA very accurately. The analytical linear cogging force and rotary cogging torque are derived and verified for the design optimization of the actuator. The 3-D finite-element method is used to verify the correctness and effectiveness of the proposed SCT.
机译:本文提出了一种新型的带交错磁极的线性旋转永磁致动器(LRPMA),与传统的Halbach结构相比,其优点是仅使用50%的钕铁硼永磁体。通过假设定子是无槽的,首先使用笛卡尔坐标系中的标量磁势分析LRPMA的磁场分布。随后推导了一种通过Schwarz-Christoffel变换(SCT)计算相对磁导率的方法,以详细分析磁场并非常准确地预测LRPMA的齿槽力/转矩。推导并分析了解析的线性齿槽力和旋转齿槽转矩,以优化执行器的设计。使用3-D有限元方法来验证所提出的SCT的正确性和有效性。

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