Design and Testing of a Nanometer Positioning System

Author:

Lihua Lu1,Yingchun Liang1,Yongfeng Guo1,Akira Shimokohbe2

Affiliation:

1. Center for Precision Engineering, Harbin Institute of Technology, Harbin 150001, P.R. China

2. Precision and Intelligence Laboratory, Tokyo Institute of Technology, Kanagawa 226-8503, Japan

Abstract

This paper presents the design and implementation of a positioning system with a dc servomotor and ball-screw mechanism used to realize high-precision positioning over a wide travel range with nanometer level positioning error and near zero overshoot. Instead of the popular dual-model control strategy and friction compensation, a high-gain proportional-integral-derivative controller is used to realize a single-step point-to-point positioning. The controller parameters are obtained by placing closed-loop poles according to the macrodynamics of a ball-screw mechanism only to avoid identification of microdynamics and friction modeling. In order to suppress the overshoot caused by actuator saturation in long-stroke positioning, a trajectory planning method is applied to calculate the input of the closed-loop system. Experimental and simulation results demonstrate that single-step precision positioning responses to different size commands are achieved without producing any large overshoot. In point-to-point positioning from 100 mm down to 10 nm, the positioning error is within 2 nm and the response dynamics is satisfactory.

Publisher

ASME International

Subject

Computer Science Applications,Mechanical Engineering,Instrumentation,Information Systems,Control and Systems Engineering

Reference20 articles.

1. Piezoelectric Actuators in Micropositioning;Pozzi;Eng. Sci. Educ. J.

2. An Angstrom Positioning System Using a Twist-Roller Friction Drive;Mizumoto;Precis. Eng.

3. High-Power Inchworm [Registered Trademark] Actuators for Extended-Range Precision Positioning;Galen

4. Precision Positioning of a DC-Motor-Driven Aerostatic Slide System;Mao;Precis. Eng.

5. Double Integrator Control for Precision Positioning in the Presence of Friction;Mao;Precis. Eng.

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