激光跟踪器
计算机科学
点(几何)
BitTorrent跟踪器
多目标优化
还原(数学)
帕累托原理
观测误差
激光器
跟踪(教育)
计量学
跟踪误差
比例(比率)
控制(管理)
数学优化
计算机视觉
光学
人工智能
数学
眼动
统计
机器学习
物理
心理学
教育学
几何学
量子力学
作者
Wen Zhong,Wencan Cheng,Tianyu Gao,Xin Zhang,Jianjun Mao,Zhijun Qi,Zengquan Liu,Hang Yu,Ming Liu,Wei Wang
摘要
The accuracy of laser trackers in large-scale dimensional metrology is subject to various influencing factors, with instrument positioning being a primary source of error. To address this, a multi-objective optimization algorithm, grounded in the Pareto improvement principle, is proposed. This algorithm is designed to optimize instrument placement, thereby minimizing measurement errors and enhancing the algorithm's efficacy in error reduction. Thereby, this article proved that positioning the laser tracker consistently on one side of the measurement area and aligning its height with the measuring points can effectively reduce the uncertainty of control point errors by up to 50%.
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