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Electromagnetic Design of a Novel DC Lorentz Motor for Micromanipulation

机译:新型微操纵直流洛伦兹电动机的电磁设计

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In this paper, an electromagnetic design method for a novel DC Lorentz Motor for micromanipulation is described. To optimize permanent magnet (PM) array and minimize the magnetic field coupling among PMs, the distribution of magnetic field and the fluctuation of Lorentz force are obtained by the 3D finite-element method (FEM). Through the electromagnetic analysis, an optimized distribution and shape of PMs are found. Finally, the optimized DC Lorentz motor is manufactured. These simulation results are verified by those of the experiment results, which presents the finite element model and simulation results are reasonable.
机译:在本文中,描述了一种用于微操纵的新型直流洛伦兹电动机的电磁设计方法。为了优化永磁体(PM)阵列并最小化PM之间的磁场耦合,可通过3D有限元方法(FEM)获得磁场分布和洛伦兹力波动。通过电磁分析,发现了最佳的PM分布和形状。最后,制造出优化的直流洛伦兹电动机。仿真结果得到了实验结果的验证,表明了有限元模型的合理性。

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