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Force Ripple Modeling and Minimizing of an Ironless Permanent-Magnet Linear Synchronous Motor

机译:强制纹波建模和最小化无铁永磁线性同步电动机

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摘要

A force ripple model considering both non-ideal magnetic field and windings was developed to study methods for the suppression of the force ripple in an ironless permanent-magnet linear synchronous motor (PMLSM) to improve its low speed stability and position tracking performance. With this new model, which uses the d-q reference frame, the force ripple information could be calculated at discrete positions using the winding features and magnetic flux density (MFD). A PMLSM with two movers and one stator was designed to measure the air gap MFD and force ripple at different positions. The reliability of the model was validated through a comparison of the force ripple data obtained with the new model and practical measurements. The error ratio between the theoretical calculations and measured forces was less than +/- 4%. Force constants were available from the model using the measured MFD, and these force constants were then used as force compensation coefficients to adjust the current in terms of the mover's position. The force ripple, particularly the periodic force ripple causing resonance of the mechanical system, was significantly reduced with compensation. The theoretical analysis and experimental results show the effectiveness of the improved model.
机译:考虑非理想磁场和绕组的力纹波模型是开发出用于抑制无铁永磁线性同步电动机(PMLSM)中的力纹波的方法,以提高其低速稳定性和位置跟踪性能。利用使用D-Q参考帧的新模型,可以使用卷绕特征和磁通密度(MFD)在离散位置来计算力纹波信息。设计具有两个移动器和一个定子的PMLSM,以测量在不同位置处的气隙MFD和力纹波。通过使用新模型和实际测量获得的力纹波数据的比较来验证模型的可靠性。理论计算和测量力之间的误差比小于+/- 4%。使用测量的MFD从模型中获得力常数,然后使用这些力常数作为力补偿系数,以根据移动位置的位置调整电流。用补偿,力纹波,特别是导致机械系统的共振的周期性纹波显着降低。理论分析和实验结果表明了改进模型的有效性。

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