Real-Time Robot Trajectory Correction through Computer Vision: a Welding Application in the Automotive Industry

被引:0
作者
Souza, Bruno J. [1 ]
da Silva, Tiago M. [1 ]
Mayer, Fernando R. [1 ]
Cecchetti, Vitoria B. [1 ]
Szejka, Anderson L. [1 ]
Freire, Roberto Z. [2 ]
机构
[1] Pontif Catholic Univ Parana PUCPR, Curitiba, Parana, Brazil
[2] Univ Tecnol Fed Parana UTFPR, Curitiba, Parana, Brazil
来源
2023 THE 6TH INTERNATIONAL CONFERENCE ON ROBOT SYSTEMS AND APPLICATIONS, ICRSA 2023 | 2023年
关键词
Adaptive Trajectory; Communication Protocols; Computer vision; Industrial Welding; Robotics;
D O I
10.1145/3655532.3655560
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
To ensure the optimal performance of welding robots in industrial applications, the elements to be welded must be accurately positioned. Additionally, elements that do not meet the quality standards can negatively influence the welding process. In this sense, failures may result in incorrect welding, leading to various structural issues within the assembly, where manual rework may be necessary to correct the errors. This work consists of developing an embedded image processing system to collect the appropriate coordinates where welds should be made on the structure of a car backrest, to adapt the trajectory of a welding robot, improving the quality and reducing the need for reworking the parts. To accomplish this application, an image acquisition system was developed. The image was processed so that it could be sent to the robot controller, which modifies the coordinates of certain movement points to correct the welding trajectory by applying an offset along the required points. To assess the effectiveness of the system, 160 weld points were tested, and 159 were found to be within the required margin of error, with only one point exhibiting a variation of 0.07 mm greater than the average in one direction. Another test performed was considering three wrong positioning of the pieces, the intention was to verify if the system could absorb these errors, thus proving the project's operation.
引用
收藏
页码:12 / 16
页数:5
相关论文
共 50 条
[31]   PRODUCTION QUALITY DECISION SUPPORT USING REAL-TIME COMPUTER VISION FRAMEWORK [J].
Grinbergs, Harijs .
15TH INTERNATIONAL SCIENTIFIC CONFERENCE: ENGINEERING FOR RURAL DEVELOPMENT, 2016, :442-447
[32]   Computer vision-enabled real-time job hazard analysis for safe human-robot collaboration in disassembly tasks [J].
Alenjareghi, Morteza Jalali ;
Keivanpour, Samira ;
Chinniah, Yuvin Adnarain ;
Jocelyn, Sabrina .
JOURNAL OF INTELLIGENT MANUFACTURING, 2024,
[33]   Smart curbs: Measuring street activities in real-time using computer vision [J].
Salazar-Miranda, Arianna ;
Zhang, Fan ;
Sun, Maoran ;
Leoni, Pietro ;
Duarte, Fabio ;
Ratti, Carlo .
LANDSCAPE AND URBAN PLANNING, 2023, 234
[34]   Interactive and Audience Adaptive Digital Signage Using Real-Time Computer Vision [J].
Ravnik, Robert ;
Solina, Franc .
INTERNATIONAL JOURNAL OF ADVANCED ROBOTIC SYSTEMS, 2013, 10
[35]   Real-Time Mobile Acceleration of DNNs: From Computer Vision to Medical Applications [J].
Li, Hongjia ;
Yuan, Geng ;
Niu, Wei ;
Cai, Yuxuan ;
Sun, Mengshu ;
Li, Zhengang ;
Ren, Bin ;
Lin, Xue ;
Wang, Yanzhi .
2021 26TH ASIA AND SOUTH PACIFIC DESIGN AUTOMATION CONFERENCE (ASP-DAC), 2021, :581-586
[36]   Remote Execution vs. Simplification for Mobile Real-time Computer Vision [J].
Hasper, Philipp ;
Petersen, Nils ;
Stricker, Didier .
PROCEEDINGS OF THE 2014 9TH INTERNATIONAL CONFERENCE ON COMPUTER VISION, THEORY AND APPLICATIONS (VISAPP 2014), VOL 3, 2014, :156-161
[37]   Research Infrastructure for Real-Time Computer Vision Applications in Unmanned Aerial Systems [J].
Dy, Luigi Raphael I. ;
Borgen, Kristoffer B. ;
Zhang, Qilei ;
Mott, John H. .
2022 IEEE 7TH INTERNATIONAL CONFERENCE ON INTELLIGENT TRANSPORTATION ENGINEERING, ICITE, 2022, :431-435
[38]   Computer vision for real-time extrusion quality monitoring and control in robotic construction [J].
Kazemian, Ali ;
Yuan, Xiao ;
Davtalab, Omid ;
Khoshnevis, Behrokh .
AUTOMATION IN CONSTRUCTION, 2019, 101 :92-98
[39]   Deep Neural Networks and Computer Vision for Real-Time Facial Landmark Detection [J].
Ciobotaru, Alexandru ;
Gota, Dan Ioan ;
Puscasiu, Adela ;
Stan, Ovidiu ;
Fanca, Alexandra ;
Domnuta, Claudiu ;
Valean, Honoriu ;
Miclea, Liviu .
INTERNATIONAL CONFERENCE ON ELECTRICAL, COMPUTER AND ENERGY TECHNOLOGIES (ICECET 2021), 2021, :424-429
[40]   A Framework for an Adaptive Human-Robot Collaboration approach through Perception-based Real-Time adjustments of robot behavior in industry [J].
Kumar, Shitij ;
Sahin, Ferat .
2017 12TH SYSTEM OF SYSTEMS ENGINEERING CONFERENCE (SOSE), 2017,