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Modeling of a Two Degrees-of-Freedom Moving Magnet Linear Motor for Magnetically Levitated Positioners

机译:磁悬浮定位器的两自由度运动磁铁线性电动机的建模

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This paper presents a novel analytical model that accurately predicts the current-force characteristic of a 2 degrees-of-freedom moving magnet linear motor (MMLM), where its translator is formed by a Halbach permanent magnet (PM) array. Unlike existing theoretical models, the uniqueness of this proposed model is based on a derived magnetic field model that accounts for the magnetic flux leakage at the edges of the Halbach PM array. Hence, it can be used to model an MMLM that employs a low-order Halbach PM array effectively. To implement the proposed model in high sampling rate control system, a model-based approximation approach is proposed to simplify the model. The simplified model minimizes the computation complexity while guarantees the accuracy of the current-force prediction. MMLM prototype with two separate translators, i.e., one with a single magnetic pole Halbach PM array and the other with six magnetic poles Halbach PM array, were developed to evaluate the accuracy of the proposed models.
机译:本文提出了一种新颖的分析模型,该模型可以准确地预测2自由度移动磁体线性电动机(MMLM)的电流-力特性,其中其转换器由Halbach永磁体(PM)阵列形成。与现有的理论模型不同,此提议模型的唯一性基于导出的磁场模型,该模型考虑了Halbach PM阵列边缘的磁通泄漏。因此,它可用于建模有效采用低阶Halbach PM阵列的MMLM。为了在高采样率控制系统中实现所提出的模型,提出了一种基于模型的近似方法来简化模型。简化的模型可以最大程度地减少计算复杂性,同时又可以保证潮流预测的准确性。 MMLM原型具有两个独立的转换器,即一个带有单个磁极Halbach PM阵列,另一个带有六个磁极Halbach PM阵列,用于评估所提出模型的准确性。

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