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Modeling of Hybrid Stepper Motor Finalized to the Optimization of the Holding Torque

机译:混合步进电机的建模定为保持扭矩优化

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The hybrid stepper motor is an electronically commutated brushless synchronous rotating electrical machine that defines incremental motion. Thanks to its remarkable precision and versatility, in recent years it has been the subject of increasing industrial applications. To obtain stepper motors with better performance, software modelling, finite element simulations and iterative optimizations by means of genetic algorithms were performed. The software used to carry out these simulations were Altair Flux 2D, Flux 3D and Hyperstudy. The computational complexity of the model obtained and the hardware tools available have imposed a magneto-static and non-transient analysis. Despite this simplification, it was necessary to proceed with a probabilistic "design of experiments" approach and a specific mathematical model before developing the optimization that otherwise would have been enormously expensive in terms of time and memory space.
机译:混合步进电机是一种用于电子换向无刷同步旋转电机,其定义增量运动。 由于其卓越的精度和多功能性,近年来它一直是越来越多的工业应用的主题。 为了获得具有更好性能的步进电机,进行软件建模,有限元模拟和通过遗传算法的迭代优化。 用于执行这些模拟的软件是Altair Flux 2D,Flux 3D和HyperStudy。 所获得的模型的计算复杂性和可用的硬件工具施加了磁静态和非瞬态分析。 尽管有这种简化,但有必要继续进行概率的“实验设计”方法和特定的数学模型,然后在开发优化之前,否则在时间和记忆空间方面会非常昂贵。

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