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首页> 外文期刊>International journal of applied electromagnetics and mechanics >Cogging torque reduction of Bldc motor using level set based topology optimization incorporating with triangular finite element
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Cogging torque reduction of Bldc motor using level set based topology optimization incorporating with triangular finite element

机译:使用基于水平集的拓扑优化并结合三角形有限元来降低Bldc电机的齿槽转矩

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摘要

Cogging torque in permanent-magnet brushless DC (BLDC) motor causes torque and speed ripples, as well as acoustic noise and vibration, especially in low speed and direct drive applications. In this paper, the stator core shape is optimized by using a level set based topology optimization to reduce cogging torque. The level set method can represent the precise boundary shape of structure and also deal with complex topology changes during the optimization process. Different from the conventional rectangular meshes, the level set technique based triangular finite element meshes are presented in this paper to deal with irregular domains. The comparison of cogging torque calculated before and after topology optimization verifies the advantages of the level set topology optimization based on triangular meshes.
机译:永磁无刷直流(BLDC)电动机中的齿槽转矩会引起转矩和速度波动,以及噪声和振动,特别是在低速和直接驱动应用中。在本文中,通过使用基于水平集的拓扑优化来减少齿槽转矩来优化定子铁心的形状。水平集方法可以表示结构的精确边界形状,还可以在优化过程中处理复杂的拓扑变化。与常规的矩形网格不同,本文提出了基于水平集技术的三角形有限元网格来处理不规则区域。拓扑优化前后计算的齿槽转矩的比较验证了基于三角网格的水平集拓扑优化的优势。

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