Driving process and control analysis in macro-micro dual stage

Jiwen Fang, Zhili Long, Lufan Zhang, Longsheng Nian
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引用次数: 5

Abstract

This paper presents a macro-micro dual stage using hybrid actuators composed of voice coil motor (VCM) and piezoelectric actuator (PZT). Connecting coarse (driven by voice coil motor) and fine (actuated by the piezoelectric), in series, to achieve a large travel range and high precision positioning. In the structure of redundant actuation, the micro stage is applied to compensate the error generated by the macro stage. The compensating method of point-to-point (PTP) positioning is divided into two types: compensation before steady state (macro/micro single input dual output) and compensation before steady state (macro/micro dual input dual output). A corresponding driving process is described in each type. In the driving process, the interference behavior between macro stage and micro stage is considered and the dynamic coupling model established. In the process of control analysis, because of the saturation of micro stage, switching control plays an important role in realizing precision positioning. Mode switching control is achieved by using switching function according to the two types of positioning way. Finally, step response shows that the positioning accuracy of dual stage is higher than single macro stage, and also can realize nano-positioning.
宏观微观双阶段驱动过程与控制分析
本文提出了一种由音圈电机(VCM)和压电作动器(PZT)组成的宏微双级混合作动器。将粗(音圈电机驱动)和精(压电驱动)串联,实现大行程范围和高精度定位。在冗余驱动结构中,采用微级补偿宏观级产生的误差。点对点(PTP)定位的补偿方法分为稳态前补偿(宏/微单输入双输出)和稳态前补偿(宏/微双输入双输出)两种。在每种类型中描述了相应的驱动过程。在驱动过程中,考虑了宏观阶段和微观阶段之间的干扰行为,建立了动态耦合模型。在控制分析过程中,由于微级的饱和,切换控制在实现精确定位中起着重要作用。根据两种定位方式,利用切换功能实现模式切换控制。最后,阶跃响应表明,双级的定位精度高于单级宏级,并且可以实现纳米级定位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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