Zhang Zhipeng, Menq Chia-Hsiang
Precision Measurement and Control Laboratory, Department of Mechanical Engineering, The Ohio State University, Columbus, OH 43210, USA.
Rev Sci Instrum. 2007 Aug;78(8):083107. doi: 10.1063/1.2776011.
This article presents the development of a precision laser interferometric system, which is designed to achieve six-axis motion measurement for real-time applications. By combining the advantage of the interferometer with a retroreflector and that of the interferometer with a plane mirror reflector, the system is capable of simultaneously measuring large transverse motions along and large rotational motions about three orthogonal axes. Based on optical path analysis along with the designed kinematics of the system, a closed form relationship between the six-axis motion parameters of the object being measured and the readings of the six laser interferometers is established. It can be employed as a real-time motion sensor for various six-axis motion control stages. A prototype is implemented and integrated with a six-axis magnetic levitation stage to illustrate its resolution and measurement range.
本文介绍了一种精密激光干涉测量系统的开发,该系统旨在实现用于实时应用的六轴运动测量。通过将干涉仪与后向反射镜的优势以及干涉仪与平面镜反射镜的优势相结合,该系统能够同时测量沿三个正交轴的大横向运动和绕三个正交轴的大旋转运动。基于光路分析以及系统设计的运动学原理,建立了被测物体六轴运动参数与六个激光干涉仪读数之间的封闭形式关系。它可以用作各种六轴运动控制阶段的实时运动传感器。实现了一个原型,并将其与六轴磁悬浮平台集成,以说明其分辨率和测量范围。