激光跟踪器
重复性
计算机视觉
测量原理
翻译(生物学)
光学
准确度和精密度
观测误差
共焦
计量学
曲面(拓扑)
补偿(心理学)
人工智能
激光器
计算机科学
物理
数学
几何学
心理学
精神分析
生物化学
统计
化学
量子力学
信使核糖核酸
基因
作者
Yuan Fu,Weiqian Zhao,Ronghui Ying,Lirong Qiu,Y Liu,Dezhi Zheng
标识
DOI:10.1109/tim.2025.3527521
摘要
The manufacturing accuracy of freeform surface is limited by its detection accuracy. In this paper, a laser differential confocal freeform surface shape measurement method based on translational motion error monitoring and compensation is proposed. This method realizes helical scanning measurements of a freeform surface via sensor translation and freeform surface rotation. Based on normal tracking principle, a position-sensitive detector is used to track the normal direction, solving the problem of large inclination freeform surface measurements limited by the maximum measurable inclination of the sensor. The laser differential confocal sensor is used to precisely focus of the surface, realizing a high-spatial-resolution measurement of the surface normal vector, with an axial resolution of up to 1 nm. By introducing a reference frame into the system, an independent translational motion reference is provided for freeform surface measurement. By monitoring, decoupling and compensating the 2D translational motion errors, the impact of these errors on measurement accuracy is greatly reduced. High-accuracy freeform surface shape measurement is finally realized. The experimental results show that after error compensation, the PV repeatability is superior to ±50 nm (3σ), RMS repeatability is superior to ±14 nm (3σ), and the measurement results are close to the standard values, enabling high-accuracy measurement of freeform surface shapes.
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