Author:
Li Rongfei,F. Assadian Francis
Abstract
The use of robotic technology has drastically increased in manufacturing in the twenty-first century. But by utilizing their sensory cues, humans still outperform machines, especially in the micro scale manufacturing, which requires high-precision robot manipulators. These sensory cues naturally compensate for high level of uncertainties that exist in the manufacturing environment. Uncertainties in performing manufacturing tasks may come from measurement noise, model inaccuracy, joint compliance (e.g., elasticity) etc. Although advanced metrology sensors and high-precision microprocessors, which are utilized in nowadays robots, have compensated for many structural and dynamic errors in robot positioning, but a well-designed control algorithm still works as a comparable and cheaper alternative to reduce uncertainties in automated manufacturing. Our work illustrates that a multi-robot control system can reduce various uncertainties to a great amount.
Reference48 articles.
1. Wallén J. The history of the Industrial Robot. Technical Report 2853. Linköping, Sweden: Linköping University, Automatic Control; 2008
2. Conrad KL, Shiakolas PS, Yih TC. Robotic calibration issues: Accuracy, repeatability and calibration. In: Proceedings of the 8th Mediterranean Conference on Control and Automation (MED2000); 17–19 July 2000. Rio, Patras, Greece: Springer; 2000
3. Mironov D, Altamirano M, Zabihifar H, Liviniuk A, Liviniuk V, Tsetserukou D. Haptics of Screwing and Unscrewing for Its Application in Smart Factories for Disassembly. Cha Springer; 2018. DOI: 10.1007/978-3-319-93399-3_37
4. Anonymous. Robotic Accuracy Improves Aerospace Manufacturing. Industry Automation Review. 2020. Available fro https://industrialautomationreview.com/robotic-accuracy-improves-aerospace-manufacturing/ [Accessed: November 30, 2021]
5. Chaumette F, Hutchinson S. Visual servo control. I. Basic approaches. IEEE Robotics & Automation Magazine. 2006;13(4):82-90. DOI: 10.1109/MRA.2006.250573
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献