Optics and Precision Engineering, Volume. 33, Issue 2, 176(2025)
Research on hand-eye calibration method of laser profilometer based on two-step method
[1] ISA M A, LAZOGLU I. Design and analysis of a 3D laser scanner[J]. Measurement, 111, 122-133(2017).
[2] HERRÁEZ J, MARTÍNEZ J C, COLL E et al. 3D modeling by means of videogrammetry and laser scanners for reverse engineering[J]. Measurement, 87, 216-227(2016).
[3] LUKER Z, STANSBURY E. In-process hole and fastener inspection using a high-accuracy laser sensor[J]. SAE International Journal of Advances and Current Practices in Mobility, 2, 1168-1173(2020).
[4] ABBAS M A, LICHTI D D, CHONG A K et al. Improvements to the accuracy of prototype ship models measurement method using terrestrial laser scanner[J]. Measurement, 100, 301-310(2017).
[5] THULASY T N, NOHUDDIN P N E, NUSYIRWAN I F et al. Application of 3D scanning technology in Royal Malaysian Air Force Industrial Revolution 4.0-based aircraft maintenance[J]. IET Networks(2022).
[6] TANG Y, ZHANG Y, FAN Y et al. An on-line path correction method based on 2D laser profile measurement for gluing robot[J]. SAE International Journal of Advances and Current Practices in Mobility, 4, 1035-1040(2022).
[7] TSAI R Y, LENZ R K. A new technique for fully autonomous and efficient 3D robotics hand/eye calibration[J]. IEEE Transactions on Robotics and Automation, 5, 345-358(1989).
[8] LI W, DONG M L, LÜ N G et al. Hand-eye calibration method without a calibration reference based on second-order cone programming[J]. Opt. Precision Eng., 26, 2536(2018).
李巍, 董明利, 吕乃光. 基于二阶锥规划无标定参照物的手眼标定[J]. 光学 精密工程, 26, 2536(2018).
[9] YIN S B, REN Y J, GUO Y et al. Development and calibration of an integrated 3D scanning system for high-accuracy large-scale metrology[J]. Measurement, 54, 65-76(2014).
[10] HAN P W, DUAN F J, LI J et al. A method for improving absolute positioning accuracy of industrial robot in entire workspace domain based on stereo vision[J]. Opt. Precision Eng., 31, 1150-1161(2023).
韩彭威, 段发阶, 李杰. 基于双目视觉与罗德里格斯旋转的机械臂全工作空间域绝对定位精度提升方法[J]. 光学 精密工程, 31, 1150-1161(2023).
[11] YIN S B, GUO Y, REN Y J et al. A novel TCF calibration method for robotic visual measurement system[J]. Optik, 125, 6920-6925(2014).
[12] ZOU H B, XIA R B, ZHAO J B et al. Extrinsic calibration method for 3D scanning system with four coplanar laser profilers[J]. Measurement Science and Technology, 34(2023).
[13] REN Y J, YIN S B, ZHU J G. Calibration technology in application of robot-laser scanning system[J]. Optical Engineering, 51, 114204(2012).
[14] 高金锋, 梁冬泰, 陈叶凯. 基于标准圆柱的线激光轮廓扫描机器人手眼标定方法[J]. 机器人, 44, 321-332(2022).
GAO J F, LIANG D T, CHEN Y K. A hand-eye calibration method of line laser profile scanning robot based on standard cylinder[J]. Robot, 44, 321-332(2022).
[15] CARLSON F B, JOHANSSON R, ROBERTSSON A. Six DOF eye-to-hand calibration from 2D measurements using planar constraints[C], 3628-3632(2015).
[16] LI M Y, DU Z J, MA X X et al. A robot hand-eye calibration method of line laser sensor based on 3D reconstruction[J]. Robotics and Computer-Integrated Manufacturing, 71, 102136(2021).
[17] SHARIFZADEH S, BIRO I, KINNELL P. Robust hand-eye calibration of 2D laser sensors using a single-plane calibration artefact[J]. Robotics and Computer-Integrated Manufacturing, 61, 101823(2020).
[18] CHEN W Y, DU J, XIONG W et al. A noise-tolerant algorithm for robot-sensor calibration using a planar disk of arbitrary 3-D orientation[J]. IEEE Transactions on Automation Science and Engineering, 15, 251-263(2018).
[19] XU J, HOO J L, DRITSAS S et al. Hand-eye calibration for 2D laser profile scanners using straight edges of common objects[J]. Robotics and Computer-Integrated Manufacturing, 73, 102221(2022).
[20] YIN S B, REN Y J, ZHU J G et al. A vision-based self-calibration method for robotic visual inspection systems[J]. Sensors, 13, 16565-16582(2013).
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Li DENG, Yilian ZHANG, Gang LIU, Yue ZHANG, Yuqi MIAO. Research on hand-eye calibration method of laser profilometer based on two-step method[J]. Optics and Precision Engineering, 2025, 33(2): 176
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Received: Aug. 19, 2024
Accepted: --
Published Online: Apr. 30, 2025
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