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Research Article

A connective framework to minimize the anxiety of collaborative Cyber-Physical System

ORCID Icon, , &
Pages 454-472 | Received 03 Oct 2021, Accepted 21 Dec 2022, Published online: 01 Jan 2023

References

  • Baraka, K., P. Alves-Oliveira, and T. Ribeiro. 2020. “An Extended Framework for Characterizing Social Robots.” Human-Robot Interaction, 21–64. Springer.
  • Bekele, E., and N. Sarkar. 2014. “Psychophysiological feedback for adaptive human–robot interaction (HRI).” In Advances in physiological computing, 141–167. Springer.
  • Beruvides, G., R. Quiza, M. Rivas and F. Castaño. 2014. “Online Detection of Run Out in Microdrilling of Tungsten and Titanium Alloys.” International Journal of Advanced Manufacturing Technology 74 (9–12): 1567–1575. doi:10.1007/s00170-014-6091-1.
  • Bin Islam, S. O., L. A. Khan, A. Khalid, and W. A. Lughmani. 2019. “A Smart Microfactory Design: An Integrated Approach.” Functional Reverse Engineering of Machine Tools, 215–253. CRC Press.
  • Cao, Z., T. Simon, S.E. Wei, and Y. Sheikh. 2017. Realtime Multi-Person 2d Pose Estimation Using Part Affinity Fields. In Proceedings of the IEEE conference on computer vision and pattern recognition, 7291–7299.
  • Castaño, F., R. E. Haber, W. M. Mohammed, M. Nejman, A. Villalonga, and J. L. Martinez Lastra. 2020. “Quality Monitoring of Complex Manufacturing Systems on the Basis of Model Driven Approach.” Smart structures and systems 26 (4): 495–506.
  • Chadalavada, R. T., H. Andreasson and M. Schindler. 2020. “Bi-Directional Navigation Intent Communication Using Spatial Augmented Reality and Eye-Tracking Glasses for Improved Safety in Human–Robot Interaction.” Robotics and computer-integrated manufacturing 61: 101830. doi:10.1016/j.rcim.2019.101830, Elsevier.
  • D’Auria, D. and F. Persia. 2017. “A Collaborative Robotic Cyber Physical System for Surgery Applications.” In 2017 IEEE International Conference on Information Reuse and Integration (IRI), 79–83. IEEE.
  • Dautenhahn, K. 2007. “Socially Intelligent Robots: Dimensions of Human-Robot Interaction.” Philosophical Transactions of the Royal Society B: Biological Sciences 362 (1480): 679–704. doi:10.1098/rstb.2006.2004.
  • Dragan, A. D., S. Bauman, J. Forlizzi, and S. S. Srinivasa. 2015. “Effects of Robot Motion on Human-Robot Collaboration.” In 2015 10th ACM/IEEE International Conference on Human-Robot Interaction (HRI), 51–58. IEEE.
  • Edward, J. C. W. Wannasuphoprasit and M. A. Peshkin. 1996. Cobots: Robots for collaboration with human operators. International Mechanical Engineering Congress and Exposition, Atlanta. Citeseer.
  • Flacco, F., T. Kröger, A. De Luca, and O. Khatib. 2012. “A Depth Space Approach to Human-Robot Collision Avoidance.” In 2012 IEEE international conference on robotics and automation, 338–345. St Paul, MN, USA: IEEE.
  • Gurobi Optimization Inc. 2021. “Gurobi.” 2021. gurobi.com.
  • Islam, S. O. B., W. Akbar Lughmani, W. Shahid Qureshi, A. Khalid, M. Angel Mariscal, and S. Garcia-Herrero. 2019. “Exploiting Visual Cues for Safe and Flexible Cyber-Physical Production Systems.” Advances in Mechanical Engineering 11 (12): 12. doi:10.1177/1687814019897228.
  • Khalid, A., P. Kirisci, Z. Ghrairi, K. -D. Dieter Thoben, and J. Pannek. 2016. “A Methodology to Develop Collaborative Robotic Cyber Physical Systems for Production Environments.” Logistics Research 9 (1). doi:10.1007/s12159-016-0151-x.
  • Khan, Z. H., A. Khalid, and J. Iqbal. 2018. “Towards Realizing Robotic Potential in Future Intelligent Food Manufacturing Systems.” Innovative food science & emerging technologies 48: 11–24.
  • Krüger, J., and T. K. Lien. 2009. “Cooperation of Human and Machines in Assembly Lines.” A Verl - CIRP annals 58 (2): 628–646. Elsevier Accessed October 2. doi:10.1016/j.cirp.2009.09.009.
  • Lanza, G., B. Haefner, and A. Kraemer. 2015. “Optimization of Selective Assembly and Adaptive Manufacturing by Means of Cyber-Physical System Based Matching.” CIRP Annals 64 (1): 399–402. Elsevier. doi:10.1016/j.cirp.2015.04.123.
  • Lasota, P. A., G. F. Rossano, and J. A. Shah 2014. “Toward Safe Close-Proximity Human-Robot Interaction with Standard Industrial Robots.” In 2014 IEEE International Conference on Automation Science and Engineering (CASE), 339–344. IEEE.
  • Lasota, P. A., and J. A. Shah. 2015. “Analyzing the Effects of Human-Aware Motion Planning on Close-Proximity Human–Robot Collaboration.” Human Factors: The Journal of the Human Factors and Ergonomics Society 57 (1): 21–33. doi:10.1177/0018720814565188.
  • Lv, C., X. Hu and A. Sangiovanni. 2018. “Driving-Style-Based Codesign Optimization of an Automated Electric Vehicle: A Cyber-Physical System Approach.” IEEE Transactions on Industrial Electronics 66 (4): 2965–2975. doi:10.1109/TIE.2018.2850031.
  • Mayer, R. J., C. P. Menzel, M. K. Painter, P. S. Dewitte, and T. Blinn. 1995. “Information Integration for Concurrent Engineering (IICE) IDEF3 Process Description Capture Method Report.”
  • Monostori, L., and Monostori - Procedia, CIRP. 2014. “Cyber-Physical Production Systems: Roots, Expectations and R&D Challenges.” Procedia CIRP 17: 9–13. doi:10.1016/j.procir.2014.03.115.
  • Morato, C., K. N. Kaipa and B. Zhao. 2014. “Toward Safe Human Robot Collaboration by Using Multiple Kinects Based Real-Time Human Tracking.” Journal of Computing and Information Science in Engineering 14 (1). doi:10.1115/1.4025810.
  • Pirvu, B. C., C. B. Zamfirescu, and D. Gorecky. 2016. “Engineering Insights from an Anthropocentric Cyber-Physical System: A Case Study for an Assembly Station.” Mechatronics 34: 147–159. doi:10.1016/j.mechatronics.2015.08.010, Elsevier.
  • Rad, C. R., O. Hancu, I. A. Takacs, and G. Olteanu. 2015. “Smart Monitoring of Potato Crop: A Cyber-Physical System Architecture Model in the Field of Precision Agriculture.” Agriculture and Agricultural Science Procedia 6: 73–79. doi:10.1016/j.aaspro.2015.08.041, Elsevier.
  • Redmon, J., and A. Farhadi. 2018. “YOLOv3: An Incremental Improvement.“ arXiv preprint arXiv:1804.02767.
  • Safeea, M., and P. Neto. 2019. “Minimum Distance Calculation Using Laser Scanner and IMUs for Safe Human-Robot Interaction.” Robotics and computer-integrated manufacturing 58: 33–42. doi:10.1016/j.rcim.2019.01.008, Elsevier.
  • Scholze, S., J. Barata, and D. Stokic. 2017. “Holistic Context-Sensitivity for Run-Time Optimization of Flexible Manufacturing Systems.” Sensors Mdpi Com 17 (3): 455. doi:10.3390/s17030455.
  • Sharkawy, A.N., P. Koustoumpardis, N. A. Aspragathos, P. N. Koustoumpardis, and N. Aspragathos. 2020. “Human–Robot Collisions Detection for Safe Human–Robot Interaction Using One Multi-Input–Output Neural Network.” Soft Computing 24 (9): 6687–6719. doi:10.1007/s00500-019-04306-7.
  • Sharma, V., F. Dittrich, S. Yildirim-Yayilgan, and L. Van Gool. 2015. “Efficient Real-Time Pixelwise Object Class Labeling for Safe Human-Robot Collaboration in Industrial Domain.” Machine Learning for Interactive Systems, 6–14. PMLR.
  • Sokovic, M., J. Jovanović, Z. Krivokapic, and A. Vujovic. 2009. “Basic Quality Tools in Continuous Improvement Process.” Journal of Mechanical Engineering 55 (5): 1–9.
  • Torpy, J. M., A. E. Burke, and R. M. Golub. 2011. “Generalized Anxiety Disorder.” Jamanetwork Com 305 (5): 522. doi:10.1001/jama.305.5.522.
  • Watson, G. 2004. “The Legacy of Ishikawa.” Quality progress 37 (4): 54.
  • Zhuge, H. 2010. “Interactive Semantics.” Artificial intelligence 174 (2): 190–204. Elsevier. doi:10.1016/j.artint.2009.11.014.
  • Zukui, L., and M. G. Ierapetritou. 2008. “Robust Optimization for Process Scheduling under Uncertainty.” Industrial & engineering chemistry research 47 (12): 4148–4157. doi:10.1021/ie071431u.

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