No-Coding Control System for Welding Robot Based on Optimized ICP Algorithm
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摘要: 随着船舶行业装备技术的迅速提升,焊接机器人逐步成为加工主力。面对日益增长的生产需求,新一代工业机器人逐步暴露出智能化水平不足、易用性不高的缺点,使得企业转型陷入困局,船舶行业发展亟需智能且易用的焊接机器人。本研究设计了一种焊接机器人免编程控制系统,通过优化最近点迭代算法,实现了亚毫米级定位精度。
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关键词:
- 船舶焊接 /
- 免编程机器人控制系统 /
- 最近点迭代算法
Abstract: With the rapid improvement of equipment and technology in the shipbuilding industry, welding robots have gradually become the main force of processing. In the face of increasing production demand, the shortcomings of insufficient intelligence and difficult operation of industrial robots are gradually exposed, which makes the transformation of enterprises into a dilemma. The development of the shipbuilding industry urgently needs intelligent and easy-to-use welding robots. In the study, we design a no-coding welding robot control system. By optimizing the iterative closest point algorithm, submillimeter-level positioning accuracy is achieved.-
Key words:
- Ship welding /
- no-coding robotsystem /
- iterative closest point
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[1] 卫丹. 焊接技术在船舶修造中的应用[J]. 船舶物资与市场, 2020(8): 60-61. [2] 赵文光, 李士凯, 张斌斌. 焊接机器人智能化技术研究现状与展望[J]. 材料开发与应用, 2016, 31(3): 108-114. [3] 张轲, 谢妤, 朱晓鹏. 工业机器人编程技术及发展趋势[J]. 金属加工(热加工), 2015(12): 16-19. [4] BESL P J, MCKAY N D. A method for registration of 3-D shapes[J]. IEEE Transactions on Pattern Analysis and Machine Intelligence, 1992, 14(2): 239-256. [5] MOHAMAD M, AHMED M T, RAPPAPORT D, et al. Super generalized 4PCS for 3D registration[C]//2015 International Conference on 3D Vision, 2015, IEEE, Lyon, France. New York IEEE, 2015: 598-606. [6] BENTLEY J L. Multidimensional binary search trees used for associative searching[J]. Communications of the ACM, 1975, 18(9): 509-517. -

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