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Spatial positioning robotic system for autonomous inspection of LPG tanks

INDUSTRIAL ROBOT-THE INTERNATIONAL JOURNAL OF ROBOTICS RESEARCH AND APPLICATION(2023)

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摘要
Purpose Automatic robots can improve the efficiency of liquefied petroleum gas (LPG) tank inspection and maintenance, but it is difficult to achieve high-precision spatial positioning and navigation on tank surfaces. The purpose of this paper is to develop a spatial positioning robotic system for tank inspection. The robot can accurately identify and track weld paths. The positioning system can complete robot's spatial positioning on tank surfaces. Design/methodology/approach A tank inspection robot with curvature-adaptive transmission mechanisms is designed in this study. A weld path recognition method based on deep learning is proposed to accurately identify and extract weld paths. Integrated multiple sensors, the positioning system is developed to improve the robot's spatial positioning accuracy. Experiments are conducted on a cylindrical tank to test weld seam tracking accuracy and spatial positioning performance of the robotic system. The practicality of the robotic system is then verified in field tests. Findings The robot can accurately identify and track weld seams with a maximum drift angle of 4 degrees and a maximum offset distance of +/- 30 mm. The positioning system has excellent positioning accuracy and stability. The maximum angle and height errors are 3 degrees and 0.08 m, respectively. Originality/value The positioning system can improve the autonomous performance of inspection robots and solve the problems of weld path recognition and spatial positioning. Application of the robotic system can promote the automatic inspection and maintenance of LPG tanks.
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关键词
Inspection robot,Weld seam recognition,Spatial positioning system,Tank inspection
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