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Shape optimization of solenoid actuator using the finite element method and numerical optimization technique

机译:基于有限元和数值优化技术的电磁执行器形状优化

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摘要

This paper presents shape optimization of moving core type solenoid actuator driven by DC source. 3-D axisymmetric finite element method (FEM) is used for the electromagnetic field analysis and saturation effect of the magnetic material is considered. The mechanical dynamic equation and electrical circuit equation are also coupled. In the dynamic characteristic by FEM, we adapt a moving line technique to save computation time and to perform the process efficiently. Among the optimization algorithms, sequential quadratic programming (SQP) is carried out for the shape optimization. A good performance of optimized solenoid actuator has been verified through the experiment.
机译:本文提出了一种由直流电源驱动的动芯式螺线管致动器的形状优化。使用3-D轴对称有限元方法(FEM)进行电磁场分析,并考虑了磁性材料的饱和效应。机械动力学方程和电路方程也被耦合。在FEM的动态特性中,我们采用了移动线技术以节省计算时间并有效地执行过程。在优化算法中,执行顺序二次规划(SQP)以进行形状优化。通过实验验证了优化螺线管执行器的良好性能。

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