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Robust Design Optimization of a High-Temperature Superconducting Linear Synchronous Motor Based on Taguchi Method

机译:基于Taguchi方法的高温超导线性同步电动机的鲁棒设计优化

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This paper investigates the efficient robust design and optimization of a high-temperature superconducting (HTS) linear synchronous motor by using the Taguchi parameter design approach. The manufacturing tolerances of the HTS magnets, primary iron core and the air gap are considered in the robust design to ensure that the optimal design is less sensitive to these uncertainties. To overcome the disadvantages of the conventional Taguchi parameter design approach, a sequential Taguchi robust optimization method is presented for improvement of the motor performance and manufacturing quality. The proposed method is efficient because it holds the advantages of both Taguchi method and sequential optimization strategy. It can significantly increase the average thrust and decrease the thrust ripple of the investigated HTS linear synchronous motor.
机译:本文使用Taguchi参数设计方法研究了高温超导(HTS)线性同步电动机的高效鲁棒设计和优化。在坚固的设计中考虑了HTS磁体,初级铁芯和气隙的制造公差,以确保最佳设计对这些不确定性不那么敏感。为了克服常规田口参数设计方法的缺点,提出了一种顺序田口鲁棒性优化方法,以改善电机性能和制造质量。所提出的方法是有效的,因为它同时具有田口方法和顺序优化策略的优点。它可以显着提高研究的HTS线性同步电动机的平均推力并减少推力波动。

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