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Magneto-Structural Combined Dimensional and Topology Optimization of Interior Permanent Magnet Synchronous Machine Rotors

机译:内部永磁同步电机转子的磁-结构组合尺寸和拓扑优化

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A magneto-structural combined dimensional and topology optimization approach for interior permanent magnet synchronous machine (IPMSM) rotor design is proposed using the Solid Isotropic Material Penalization (SIMP) density-based topology optimization method. This method optimizes the location and dimensions of the permanent magnets (PMs) embedded in the rotor, while simultaneously optimizing the lamination flux barriers using topology optimization.To allow for the location and dimensions of the PMs to change while retaining the same number of mesh elements and connectivity, the mesh must be deformed. Mesh deformation is accomplished using a Laplace smoothing technique. To increase the range of PM displacement and size changes, the non-PM areas of the rotor design domain are divided into sub-regions along whose boundaries the mesh nodes are redistributed also using a Laplace smoothing algorithm. Three examples of IPMSM rotor optimizations are presented to demonstrate the proposed approach.
机译:提出了一种基于固体各向同性材料罚分(SIMP)密度的拓扑优化方法,设计了一种用于内部永磁同步电机(IPMSM)转子的磁-结构组合尺寸和拓扑优化方法。该方法可优化嵌入转子的永磁体(PM)的位置和尺寸,同时使用拓扑优化来优化叠片磁通势垒。在保留相同数量的网格元素的情况下,允许PM的位置和尺寸发生变化和连接性,网格必须变形。网格变形是使用Laplace平滑技术完成的。为了增加PM位移的范围和尺寸变化,将转子设计域的非PM区域划分为多个子区域,沿着这些子区域的边界,网格节点也可以使用拉普拉斯平滑算法进行重新分布。给出了IPMSM转子优化的三个示例,以证明所提出的方法。

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