首页> 外文会议>International conference on optical instruments and technology : MEMS/NEMS technology and applications; 20081116-19; Beijing(CN) >Design of a self-adaptive fuzzy PID controller for piezoelectric ceramics micro-displacement system
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Design of a self-adaptive fuzzy PID controller for piezoelectric ceramics micro-displacement system

机译:压电陶瓷微位移系统自适应模糊PID控制器的设计

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摘要

In order to improve control precision of the piezoelectric ceramics (PZT) micro-displacement system, a self-adaptive fuzzy Proportional Integration Differential (PID) controller is designed based on the traditional digital PID controller combining with fuzzy control. The arithmetic gives a fuzzy control rule table with the fuzzy control rule and fuzzy reasoning, through this table, the PID parameters can be adjusted online in real time control. Furthermore, the automatic selective control is achieved according to the change of the error. The controller combines the good dynamic capability of the fuzzy control and the high stable precision of the PID control, adopts the method of using fuzzy control and PID control in different segments of time. In the initial and middle stage of the transition process of system, that is, when the error is larger than the value, fuzzy control is used to adjust control variable. It makes full use of the fast response of the fuzzy control. And when the error is smaller than the value, the system is about to be in the steady state, PID control is adopted to eliminate static error. The problems of PZT existing in the field of precise positioning are overcome. The results of the experiments prove that the project is correct and practicable.
机译:为了提高压电陶瓷微位移系统的控制精度,在传统数字PID控制器与模糊控制相结合的基础上,设计了一种自适应模糊比例积分微分(PID)控制器。该算法给出了具有模糊控制规则和模糊推理的模糊控制规则表,通过该表可以实时在线调节PID参数。此外,根据误差的变化实现自动选择控制。该控制器结合了模糊控制的良好动态能力和PID控制的高稳定精度,采用了在不同时间段使用模糊控制和PID控制的方法。在系统过渡过程的初始和中间阶段,即当误差大于该值时,使用模糊控制来调整控制变量。它充分利用了模糊控制的快速响应。当误差小于设定值时,系统将进入稳定状态,采用PID控制消除静态误差。克服了精确定位领域中存在的PZT问题。实验结果证明该方案是正确可行的。

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