Combining Augmented Reality (AR) with Software Engineering for Remote Collaboration
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DOI:
https://doi.org/10.67228/30713315/IJAIDT-2018PII4R3CPublished 07-05-2018
Augmented Reality (AR), Remote Collaboration, Software Engineering, Distributed Teams, Immersive Collaboration, Virtual Environments, Real-Time Problem Solving, Remote Work Solutions Issue
Section
ArticlesHow to Cite
[1]C. Ming and W. Li, “Combining Augmented Reality (AR) with Software Engineering for Remote Collaboration”, IJAIDT, vol. 1, no. 2, pp. 01–12, Jul. 2018, doi: 10.67228/30713315/IJAIDT-2018PII4R3C.Abstract
This paper explores the integration of Augmented Reality (AR) with software engineering practices to enhance remote collaboration among distributed teams. As remote work becomes increasingly common, software engineering teams face challenges in maintaining effective communication, real-time problem-solving, and collaboration. AR technologies offer innovative solutions to bridge these gaps by creating immersive, shared virtual environments that enable engineers to collaborate seamlessly, regardless of geographic location. This paper discusses the potential of AR to transform remote software development, focusing on its applications, benefits, challenges, and real-world examples. By investigating the intersection of AR and software engineering, the paper provides insights into how this emerging technology can improve efficiency and collaboration in the future of remote work.
References
[1] Lukosch, S., Billinghurst, M., Alem, L., & others. (2015). Collaboration in Augmented Reality. Computer Supported Cooperative Work (CSCW), 24, 515 525. SpringerLink+1
[2] Barakonyi, I., Fahmy, T., & Schmalstieg, D. (2004). Remote collaboration using Augmented Reality Videoconferencing. Proceedings of Graphics Interface 2004, 89 96. graphicsinterface.org
[3] Lukosch, S., Billinghurst, M., Alem, L., & Kiyokawa, K. (2015). Collaboration in augmented reality. Computer Supported Cooperative Work (CSCW), 24(6), 515–525.
[4] Barakonyi, I., Fahmy, T., & Schmalstieg, D. (2014). Remote collaboration using augmented reality videoconferencing. Proceedings of IEEE International Symposium on Mixed and Augmented Reality.
[5] Peake, I. D., Blech, J. O., Nath, S., Aharon, J. J., & McGhie, A. (2017). Towards a cloud-based architecture for visualization and augmented reality to support collaboration in manufacturing automation. arXiv preprint arXiv:1711.05997.
[6] Billinghurst, M., Clark, A., & Lee, G. (2015). A survey of augmented reality. Foundations and Trends in Human–Computer Interaction, 8(2–3), 73–272.
[7] Alem, L., & Huang, W. (2011). Recent trends of mobile collaborative augmented reality systems. Springer Handbook of Augmented Reality, 657–688.
[8] Green, S. A., Billinghurst, M., Chen, X., & Chase, J. G. (2008). Human-robot collaboration: A literature review and augmented reality approach. International Journal of Advanced Robotic Systems.
[9] Azuma, R. T. (1997). A survey of augmented reality. Presence: Teleoperators and Virtual Environments, 6(4), 355–385.
[10] Kiyokawa, K., Billinghurst, M., Hayes, S. E., & Gupta, A. (2002). Communication behaviors of co-located users in collaborative AR interfaces. Proceedings of IEEE ISAR.
[11] Billinghurst, M., & Kato, H. (2002). Collaborative mixed reality. Proceedings of International Symposium on Mixed and Augmented Reality (ISMAR).
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How to Cite
[1]C. Ming and W. Li, “Combining Augmented Reality (AR) with Software Engineering for Remote Collaboration”, IJAIDT, vol. 1, no. 2, pp. 01–12, Jul. 2018, doi: 10.67228/30713315/IJAIDT-2018PII4R3C.