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Nonlinearity analysis, modeling and compensation in PZT micro actuator of dual-stage actuator system

机译:双级执行器系统的PZT微型执行器的非线性分析,建模和补偿

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A dual-stage actuator system consists of a coarse actuator for large motion and a micro-actuator facilitating small but precise motion to improve tracking performance. Piezoelectric micro-actuator made from PZT (Lead-Zirconium-Titanium) has been a popular choice as the secondary stage. However, the advantage gained by the precision of secondary actuator is somewhat lost by the inherent hysteresis nonlinearity of PZT actuator, if not compensated. This paper presents a rigorous analysis and modeling of the hysteresis of PZT actuator and its compensation in a dual-stage servo system. For the controller of dual-stage, a simple design approach is followed. The coarse actuator loop is first designed for basic performance and stability, using composite nonlinear feedback control. The compensator for the micro-actuator is then designed to achieve better performance of the overall system and it also includes the hysteresis compensator. Simulation results underscore the effectiveness of the design.
机译:双级致动器系统由用于大运动的粗致动器和便于小而精确的运动以改善跟踪性能的微致动器组成。由PZT(铅-锆-钛)制成的压电微执行器已成为第二阶段的热门选择。但是,如果不进行补偿,则由于PZT执行器固有的滞后非线性,在某种程度上失去了次级执行器精度所获得的优势。本文对双级伺服系统中PZT执行器的磁滞及其补偿进行了严格的分析和建模。对于双级控制器,遵循一种简单的设计方法。首先使用复合非线性反馈控制来设计粗略的执行器环路,以实现基本性能和稳定性。然后将微执行器的补偿器设计为实现整个系统的更好性能,并且还包括磁滞补偿器。仿真结果强调了设计的有效性。

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