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High-Precision Motion Control for a Linear Permanent Magnet Iron Core Synchronous Motor Drive in Position Platform

机译:位置平台中的线性永磁铁芯同步电动机驱动器的高精度运动控制

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摘要

The high precision motion tracking controller consisting of a linear permanent magnet iron core synchronous motor (LPMICSM) operating on a positioning platform is proposed. First, we address important issues related to the construction and driving theorem of the LPMICSM. Next the general system dynamic model is derived and analyzed. Then, because of the uncertainties and unknown parameters of the underlying system, a discrete adaptive sliding-mode (DASM) controller is proposed to guarantee system stability for both regulation and tracking tasks. Finally, according to the reported experimental results, the satisfactory performances including step regulation and tracking sinusoid, has been achieved. Therefore, the proposed control method is feasible and effective in high-precision motion control of LPMICSM.
机译:提出了一种由定位平台上运行的线性永磁铁心同步电动机(LPMICSM)组成的高精度运动跟踪控制器。首先,我们解决与LPMICSM的构造和驱动定理有关的重要问题。接下来,将推导并分析一般的系统动力学模型。然后,由于底层系统的不确定性和未知参数,提出了一种离散自适应滑模(DASM)控制器,以保证调节和跟踪任务的系统稳定性。最后,根据已报道的实验结果,获得了令人满意的性能,包括步进调节和跟踪正弦曲线。因此,所提出的控制方法在LPMICSM的高精度运动控制中是可行和有效的。

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