首页> 外文会议>IFAC (International Federation of Automatic Control) World Congress >ROBUST POSITION CONTROL OF LINEAER PIEZOELECTRIC MOTOR DRIVE SYSTEMS
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ROBUST POSITION CONTROL OF LINEAER PIEZOELECTRIC MOTOR DRIVE SYSTEMS

机译:线性压电电机驱动系统的鲁棒位置控制

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摘要

The friction and load variation are the main uncertainties in the linear piezoelectric motor system. Only the viscous friction is considered in previous work, but it is quite different with the practical condition. Highly nonlinear friction in the system is measured and compensated by a radial basis function (RBF) network. A discrete-time sliding mode controller, which is insensitive to the perturbed state matrix and input matrix and disturbances, is proposed for LPM drive system. Furthermore, three free design parameters are optimized to achieve better transient performance by genetic algorithm and one online mass estimator is adopted to extend the robustness. The simulation and experiment results show that the proposed controller has a stronger robustness than PID controller.
机译:摩擦和负载变化是线性压电电机系统中的主要不确定因素。在以前的工作中只考虑了粘滞摩擦,但与实际情况有很大不同。系统中的高度非线性摩擦是通过径向基函数(RBF)网络进行测量和补偿的。提出了一种对LPM驱动系统不敏感的状态矩阵和输入矩阵以及扰动的离散时间滑模控制器。此外,通过遗传算法对三个自由设计参数进行了优化,以实现更好的瞬态性能,并采用了一个在线质量估计器来扩展鲁棒性。仿真和实验结果表明,所提出的控制器具有比PID控制器更强的鲁棒性。

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