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首页> 外文期刊>Electric Power Applications, IET >Disturbance suppression for PMSM by a non-linear composite controller based on two-channel strategy
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Disturbance suppression for PMSM by a non-linear composite controller based on two-channel strategy

机译:基于两通道策略的非线性复合控制器对PMSM的干扰抑制

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摘要

A non-linear adaptive backstepping controller based on linear extend state observer (NABESO) is designed to track speed of PMSM. This study proposes a two-channel strategy which is applied for the online elimination of the influence of unknown load torque and parameters disturbances. According to the strategy, an adaptive controller is designed to eliminate the load torque and parameters disturbance of the first channel, and a linear extended state observer is chosen in a feedforward method to observe the internal time-varying parameters disturbance of the second channel as well as compensating the disturbances from the first channel. The proposed strategy can not only achieve online estimation of the load disturbance, but also suppress disturbances caused by the changes of all parameters, and to some extent, the negative transient response can also be avoided by abandoning traditional cascade control mode. Besides the functional advantages, the proposed controller is of pertinence and flexibility in parameters selection. Finally, the simulation and experimental results both display that the proposed strategy can effectively suppress the impact of internal and external disturbance on the PMSM control performance.
机译:设计了一种基于线性扩展状态观测器(NABESO)的非线性自适应反推控制器来跟踪PMSM的速度。这项研究提出了一种两通道策略,该策略用于在线消除未知负载转矩和参数扰动的影响。根据该策略,设计了一种自适应控制器来消除第一通道的负载转矩和参数扰动,并且在前馈方法中选择线性扩展状态观察器以观察第二通道的内部时变参数扰动作为补偿来自第一通道的干扰。所提出的策略不仅可以实现负荷扰动的在线估计,而且可以抑制由所有参数的变化引起的扰动,并且在一定程度上可以通过放弃传统的级联控制模式来避免负的瞬态响应。除了功能优势之外,所提出的控制器在参数选择方面具有针对性和灵活性。最后,仿真和实验结果均表明,该策略可以有效抑制内,外部干扰对永磁同步电机控制性能的影响。

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