An Enhanced Field Reconstruction Method for Design of Permanent Magnet Synchronous Machines

B. Deken, S. Pekarek, B. Fahimi
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引用次数: 4

Abstract

Knowledge of forces within permanent magnet synchronous machines (PMSMs) is of interest in numerous applications. To compute the forces, many analysts utilize the finite element (FE) method to compute the vector fields followed by the Maxwell stress tensor (MST) approach to calculate forces from the fields. Although the FE/MST approach has been used for decades, it does have a shortcoming in the computational requirement of the FE method, which limits the approach to a tool for analysis rather than for comprehensive machine design. To address this, a new so-called Enhanced Field Reconstruction Technique (EFRT) has been developed. Using the EFRT, the fields inside a machine are computed using a minimum number of FE evaluations. Using the results, a set of basis functions are established that enable the calculation of forces inside the machine under arbitrary excitation and rotor position. The EFRT greatly reduces the computational effort required to compute the vector forces inside machines with an accuracy similar to the FE method.
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一种用于永磁同步电机设计的增强磁场重构方法
在永磁同步电机(pmms)内的力的知识是在许多应用中感兴趣的。为了计算力,许多分析人员使用有限元(FE)方法计算矢量场,然后使用麦克斯韦应力张量(MST)方法从场中计算力。虽然有限元/MST方法已经使用了几十年,但它在有限元方法的计算要求方面确实存在缺点,这限制了该方法作为分析工具而不是全面的机器设计。为了解决这个问题,开发了一种新的所谓的增强现场重建技术(EFRT)。使用EFRT,使用最少数量的FE评估来计算机器内部的字段。利用这些结果,建立了一套基函数,可以计算在任意激励和转子位置下机器内部的力。EFRT大大减少了计算机器内部矢量力所需的计算工作量,其精度与有限元方法相似。
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