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Feedforward Control of Shape Memory Alloy Actuators Using Fuzzy-Based Inverse Preisach Model

机译:基于模糊逆Preisach模型的形状记忆合金驱动器前馈控制

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This brief investigates a possible application of the inverse Preisach model in combination with the feedforward and feedback control strategies to control shape memory alloy actuators. In the feedforward control design, a fuzzy-based inverse Preisach model is used to compensate for the hysteresis nonlinearity effect. An extrema input history and a fuzzy inference is utilized to replace the inverse classical Preisach model. This work allows for a reduction in the number of experimental parameters and computation time for the inversion of the classical Preisach model. A proportional–integral–derivative (PID) controller is used as a feedback controller to regulate the error between the desired output and the system output. To demonstrate the effectiveness of the proposed controller, real-time control experiment results are presented.
机译:本文简要研究了反向Preisach模型与前馈和反馈控制策略相结合来控制形状记忆合金执行器的可能应用。在前馈控制设计中,基于模糊的逆Preisach模型用于补偿磁滞非线性效应。极值输入历史和模糊推论被用来代替逆经典Preisach模型。这项工作可以减少经典Preisach模型反演的实验参数数量和计算时间。比例积分微分(PID)控制器用作反馈控制器,以调节所需输出和系统输出之间的误差。为了证明所提出的控制器的有效性,提出了实时控制实验结果。

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