旋转编码器
激光跟踪器
软件
校准
计算机科学
流离失所(心理学)
背景(考古学)
编码器
距离测量
计量系统
准确度和精密度
激光器
光学
人工智能
物理
心理学
古生物学
量子力学
天文
心理治疗师
生物
程序设计语言
操作系统
作者
Heng Liu,Yonghua Lü,Yang Hai-bo,Lihua Zhou,Qiang Feng
出处
期刊:Sensor Review
[Emerald (MCB UP)]
日期:2024-02-27
卷期号:44 (2): 81-89
标识
DOI:10.1108/sr-06-2023-0197
摘要
Purpose In the context of fixed-wing aircraft wing assembly, there is a need for a rapid and precise measurement technique to determine the center distance between two double-hole components. This paper aims to propose an optical-based spatial point distance measurement technique using the spatial triangulation method. The purpose of this paper is to design a specialized measurement system, specifically a spherically mounted retroreflector nest (SMR nest), equipped with two laser displacement sensors and a rotary encoder as the core to achieve accurate distance measurements between the double holes. Design/methodology/approach To develop an efficient and accurate measurement system, the paper uses a combination of laser displacement sensors and a rotary encoder within the SMR nest. The system is designed, implemented and tested to meet the requirements of precise distance measurement. Software and hardware components have been developed and integrated for validation. Findings The optical-based distance measurement system achieves high precision at 0.04 mm and repeatability at 0.02 mm within a range of 412.084 mm to 1,590.591 mm. These results validate its suitability for efficient assembly processes, eliminating repetitive errors in aircraft wing assembly. Originality/value This paper proposes an optical-based spatial point distance measurement technique, as well as a unique design of a SMR nest and the introduction of two novel calibration techniques, all of which are validated by the developed software and hardware platform.
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