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Non-linear Generalized Predictive Control of Traveling-wave Ultrasonic Motor

机译:行波超声波电动机的非线性广义预测控制

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摘要

Based on the experimental data of an ultrasonic motor's dynamic response, the non-linear Hammerstein model of an ultrasonic motor driving system is obtained by using particle swarm optimization. This model uses motor-driven frequency as input and rotating speed as output. As such, the main characteristics of nonlinearity in the ultrasonic motor operation process can belter be expressed with a relatively simple form and a kind of feasible modeling method for model identification of ultrasonic motor system is proposed. Based on this Hammerstein model, the self-tuning nonlinear generalized predictive speed control strategy of an ultrasonic motor is proposed and the tuning method of the controller's parameters is also discussed in detail. This control strategy utilizes the roll forecasting, optimization and online self-tuning methods to deal with the nonlinearity of the ultrasonic motor. The experiments with a variety of disturbances indicate the efficiency and robustness of the proposed strategy.
机译:基于超声电机动态响应的实验数据,利用粒子群算法获得了超声电机驱动系统的非线性Hammerstein模型。该模型使用电动机驱动的频率作为输入,并使用转速作为输出。这样,可以用相对简单的形式来表达超声电机运行过程中非线性的主要特征,并提出了一种可行的超声电机系统模型辨识的建模方法。基于该Hammerstein模型,提出了一种超声波电机的自整定非线性广义预测速度控制策略,并详细讨论了控制器参数的整定方法。该控制策略利用滚动预测,优化和在线自整定方法来处理超声马达的非线性。具有各种干扰的实验表明了所提出策略的效率和鲁棒性。

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