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Topological Shape Optimization of Permanent Magnet in Voice Coil Motor Using Level Set Method

机译:基于水平集法的音圈电机永磁体拓扑形状优化

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In this paper, a voice coil motor is optimized using the single-phase and the multi-phase level set method, and the magnetic saturation effect is considered in the optimization. The normal velocities on the moving boundaries are calculated by a design sensitivity analysis (DSA) using the adjoint variable method (AVM). In the first numerical example using a C-core actuator, the level set based optimization is compared with conventional topology optimization. In the second numerical example of the voice coil motor, optimizations using the single-phase and the multi-phase level set method are performed to maximize the Lorentz force on the moving coil by means of the optimal shapes of the permanent magnet and the ferromagnetic material in a design domain.
机译:本文采用单相和多相电平设置方法对音圈电动机进行了优化,并在优化中考虑了磁饱和效应。使用边界变量法(AVM)通过设计灵敏度分析(DSA)计算移动边界上的法向速度。在使用C型磁芯执行器的第一个数值示例中,将基于水平集的优化与常规拓扑优化进行了比较。在音圈电动机的第二个数值示例中,执行了使用单相和多相电平设置方法的优化,以通过永磁体和铁磁材料的最佳形状来最大化对移动线圈的洛伦兹力在设计领域。

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