Li Hai, Zhang Xianmin, Zhu Benliang, Lu Yihua, Wu Heng
Appl Opt. 2017 Dec 1;56(34):9435-9443. doi: 10.1364/AO.56.009435.
This study presents a method for micro-motion detection of the three-degrees-of-freedom (3-DOF; x, y, θ) precision positioning stage (PPS) based on iterative optimized template matching (IOTM). In this method, a micro-vision system (MVS) is constructed and employed to capture magnified images of the measured PPS's surface with high quality. In addition, an efficient and accurate IOTM algorithm, which includes a pyramid hierarchical matching step for generating the initial guess and an iterative searching step for 3-DOF fine matching, is proposed to detect the micro-motion of the 3-DOF PPS. The simulation results show that the locating accuracy of the translation component (TC) and rotation component of this algorithm can respectively reach 0.01 pixels and 0.01 deg when the image quality is high and the initial guess is close to the real location. Measurement tests of a nano-PPS verify that the proposed method is practical and effective for 3-DOF micro-motion detection and the absolute accuracy of the TC of the MVS can easily reach the nanometer level.
本研究提出了一种基于迭代优化模板匹配(IOTM)的三自由度(3-DOF;x、y、θ)精密定位平台(PPS)微运动检测方法。在该方法中,构建并使用了一个微视觉系统(MVS),以高质量捕获被测PPS表面的放大图像。此外,还提出了一种高效且准确的IOTM算法,该算法包括用于生成初始猜测的金字塔分层匹配步骤和用于三自由度精细匹配的迭代搜索步骤,以检测三自由度PPS的微运动。仿真结果表明,当图像质量较高且初始猜测接近真实位置时,该算法的平移分量(TC)和旋转分量的定位精度分别可达0.01像素和0.01度。对纳米PPS的测量测试验证了所提方法对于三自由度微运动检测是实用且有效的,并且MVS的TC绝对精度可轻松达到纳米级别。