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Dynamic Optimization of an Axisymmetric Linear Electromagnetic Valve Actuator

机译:轴对称线性电磁阀致动器的动态优化

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The aim of this paper is to describe the optimization of a permanent magnet linear actuator with soft mover for electromagnetic valves. A 2D numerical model based on finite element method was applied for magnetic field analysis in the electromagnetic actuator. The magnetic force acting on the moving part is computed by the use of local virtual work method. The motion is also taken into account in this work by the movement band technique. For optima] use of the magnet in the operation of the actuator, an optimization approach aims to determine the best dimensions of the magnet for a minimum opposite electromagnetic force acting on the moving part is proposed. The used optimization process is carried out by coupling the finite element magnetic field analysis with genetic algorithm.
机译:本文的目的是描述具有用于电磁阀的软动机的永磁线性致动器的优化。 基于有限元法的2D数值模型应用于电磁致动器中的磁场分析。 通过使用局部虚拟工作方法来计算作用在移动部件上的磁力。 在这项工作中也通过运动带技术考虑了运动。 为了获得磁体在致动器的操作中,优化方法旨在确定磁体的最佳尺寸,以提出作用在移动部件上的最小相反电磁力。 通过用遗传算法耦合有限元磁场分析来执行使用的优化过程。

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