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ELECTROMAGNETIC DESIGN OF IN-VEHICLE REACTOR USING A LEVEL-SET BASED TOPOLOGY OPTIMIZATION METHOD

机译:基于水平集拓扑优化方法的车内反应器电磁设计

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In this paper, we propose a level-set based topology optimization method for designing a reactor, which is used as a part of the DC-DC converter in electric and hybrid vehicles. Since it realizes a high-power driving motor and its performance relies on its component, i.e., reactor core, it is valuable to establish a reasonable design method for the reactor core. Boundary tracking type level-set topology optimization is suitable for this purpose, because the shape and topology of the target structure is clearly represented by the zero boundary of the level-set function, and the state variables are accurately computed using the zero boundary tracking mesh. We formulate the design problem on the basis of electromagnetics, and derive the design sensitivities. The derived sensitivities are linked with boundary tracking type level-set topology optimization, and as a result, a useful structural optimization method for the reactor core design problem is developed.
机译:在本文中,我们提出了一种基于水平集的拓扑优化方法来设计电抗器,该方法被用作电动和混合动力车辆的DC-DC转换器的一部分。由于它实现了大功率驱动电动机并且其性能取决于其组件即电抗器铁心,因此为电抗器铁心建立合理的设计方法是很有价值的。边界跟踪类型的水平集拓扑优化适用于此目的,因为目标结构的形状和拓扑结构由水平集函数的零边界清楚地表示,并且状态变量是使用零边界跟踪网格精​​确计算的。我们根据电磁学来阐述设计问题,并得出设计灵敏度。推导的灵敏度与边界跟踪类型的水平集拓扑优化联系在一起,因此,开发了一种用于反应堆堆芯设计问题的有用的结构优化方法。

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