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Precision control of a piezoceramic actuator using neural networks

机译:使用神经网络压电陶瓷执行器的精确控制

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This paper is to study the precision control of a piezoceramic actuator (PA). Due to the inherent hysteresis nonlinearity, the PA always causes position error in the open-loop system and instability in the closed-loop system. To remedy this problem, a new control method combining the feedforward and feedback controllers is proposed to improve the dynamic performance of the PA. In the feedforward controller design, the hysteresis nonlinearity of the PA is modeled by using Preisach model first. A database of input/output history and a neural networks architecture treated as the inverse function of Preisach model are also utilized in the feedforward controller. In the feedback controller design, a PI controller is used to regulate the error between the command input and system output. In experiment, the command of square wave, sinusoid wave and triangular wave is taken as the tested signal to validate the excellent performances of the proposed controller.
机译:本文是研究压电陶瓷执行器(PA)的精确控制。由于固有的滞后非线性,PA始终导致开环系统中的位置误差和闭环系统中的不稳定性。为了解决这个问题,提出了一种结合前馈和反馈控制器的新控制方法来提高PA的动态性能。在前馈控制器设计中,首先使用Preisach模型建模PA的滞后非线性。还利用了作为预震模型的逆功能的输入/输出历史记录和神经网络架构的数据库。在反馈控制器设计中,PI控制器用于调节命令输入和系统输出之间的误差。在实验中,将方波,正弦波和三角波的命令作为测试信号,以验证所提出的控制器的优异性能。

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