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Analysis of the limitations of conventional direct thrust control scheme for linear permanent magnet synchronous motors

机译:线性永磁同步电动机常规直接推力控制方案局限性分析

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摘要

A rigorous mathematical analysis of the conventional direct thrust control scheme for linear permanent magnet synchronous motor is presented. The main inspiration for direct thrust control scheme is the direct torque control algorithm for the rotational permanent magnet synchronous motor which provides a reasonably good torque and flux response. However in case of linear permanent magnet motors, the control performance of the conventional direct thrust is significantly compromised, due to the limitations of this algorithm. A comprehensive mathematical analysis of these limitations of the conventional direct thrust control scheme for linear permanent synchronous magnet motor is carried out in this work. In addition a novel state space model for linear permanent magnet synchronous motor in stator flux reference frame is proposed. This novel state space model provides bases for the formal mathematical derivation of a modified direct thrust control algorithm. The theoretical conclusions are validated experimentally. Moreover the proposed state space model is also tested for its improved performance with negligible ripple in thrust and flux responses by its practical implementation in the laboratory.
机译:对线性永磁同步电动机的常规直接推力控制方案进行了严格的数学分析。直接推力控制方案的主要灵感是旋转永磁同步电动机的直接转矩控制算法,该算法可提供合理的转矩和磁通响应。然而,在线性永磁电动机的情况下,由于该算法的局限性,传统的直接推力的控制性能大大降低。在这项工作中,对传统的线性永磁同步电动机直接推力控制方案的局限性进行了全面的数学分析。此外,提出了一种新型的定子磁链参考系中的线性永磁同步电动机状态空间模型。这种新颖的状态空间模型为改进的直接推力控制算法的形式数学推导提供了基础。理论结论得到了实验验证。此外,通过在实验室中的实际实施,还对所提出的状态空间模型的推力和通量响应波动可忽略不计的性能进行了测试。

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