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首页> 外文期刊>Mechatronics, IEEE/ASME Transactions on >Precision Motion Control of Permanent Magnet Linear Synchronous Motors Using Adaptive Fuzzy Fractional-Order Sliding-Mode Control
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Precision Motion Control of Permanent Magnet Linear Synchronous Motors Using Adaptive Fuzzy Fractional-Order Sliding-Mode Control

机译:永磁线性同步电动机的精密运动控制使用自适应模糊分数级滑动模式控制

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摘要

The aim of this study is to develop an adaptive fuzzy fractional-order sliding-mode control (AFFSMC) strategy to control the mover position of a permanent magnet linear synchronous motor (PMLSM) system. First, the mathematical model of the PMLSM is investigated by using the principle of field oriented control. Subsequently, a fractional-order sliding-mode control (FSMC) is designed by means of a new fractional-integral sliding surface. Because it is difficult to determine the hitting control gain for the FSMC in practice, the AFFSMC is further developed in which an uncertainty observer is developed to observe uncertainties while an adaptive fuzzy reaching regulator is designed to concurrently compensate for observation deviations and suppress the chattering phenomenon. The adaptive laws are derived to tune the control parameters online based on the Lyapunov stability theorem. Thus, the uncertainty bound information is not required while the chattering can be attenuated. Finally, experiments demonstrate that the proposed AFFSMC system performs the robust control performance and precise tracking response for the PMLSM drive system against the parameter variations and external disturbances.
机译:本研究的目的是开发一种自适应模糊的分数级滑动模式控制(AFFSFC)策略,以控制永磁线性同步电动机(PMLSM)系统的移动位置。首先,通过使用现场对照的原理来研究PMLSM的数学模型。随后,通过新的分数整体滑动表面设计分数级滑模控制(FSMC)。因为在实践中难以确定FSMC的击中控制增益,所以进一步开发了AFFSFC,其中开发了不确定的观察者以观察不确定性,同时设计自适应模糊到达调节器以同时补偿观察偏差并抑制喋喋不休现象。派生自适应法则以基于Lyapunov稳定定理在线调整控制参数。因此,在可以减弱抖动时不需要不确定界限信息。最后,实验表明,所提出的Affsmc系统对PMLSM驱动系统的稳健控制性能和精确的跟踪响应,与参数变化和外部干扰。

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