Internet of Things Meets Robotics: A Survey of Cloud-based Robots (2306.02586v4)
Abstract: This work presents a survey of existing literature on the fusion of the Internet of Things (IoT) with robotics and explores the integration of these technologies for the development of the Internet of Robotics Things (IoRT). The survey focuses on the applications of IoRT in healthcare and agriculture, while also addressing key concerns regarding the adoption of IoT and robotics. Additionally, an online survey was conducted to examine how companies utilize IoT technology in their organizations. The findings highlight the benefits of IoT in improving customer experience, reducing costs, and accelerating product development. However, concerns regarding unauthorized access, data breaches, and privacy need to be addressed for successful IoT deployment.
- Internet of things and robotics in transforming current-day healthcare services. Journal of Healthcare Engineering, 2021, 2021.
- Agrobot- an iot-based automated multi-functional robot. In 2022 IEEE Conference on Interdisciplinary Approaches in Technology and Management for Social Innovation (IATMSI), pages 1–6, 2022.
- Network robot systems. Robotics and autonomous systems, 56(10):793–797, 2008.
- The peis-ecology project: Vision and results. In 2008 IEEE/RSJ International Conference on Intelligent Robots and Systems, pages 2329–2335, 2008.
- Ubiquitous robot: A new paradigm for integrated services. In Proceedings 2007 IEEE International Conference on Robotics and Automation, pages 2853–2858, 2007.
- A survey of research on cloud robotics and automation. IEEE Transactions on Automation Science and Engineering, 12(2):398–409, 2015.
- Cloud robotics: architecture, challenges and applications. IEEE Network, 26(3):21–28, 2012.
- Cloud networked robotics. IEEE Network, 26(3):28–34, 2012.
- Ankur Roy Chowdhury. Iot and robotics: a synergy. PeerJ Preprints, 5:e2760v1, 2017.
- Internet of robotic things: Context-aware and personalized interventions of assistive social robots (short paper). In 2016 5th IEEE International Conference on Cloud Networking (Cloudnet), pages 204–207. IEEE, 2016.
- A neural network and iot based scheme for performance assessment in internet of robotic things. In 2016 IEEE first international conference on internet-of-things design and implementation (IoTDI), pages 241–246. IEEE, 2016.
- A rule-based context transforming model for robot services in internet of things environment. In 2017 14th International Conference on Ubiquitous Robots and Ambient Intelligence (URAI), pages 331–336, 2017.
- Industrial internet of things at work: a case study analysis in robotic-aided environmental monitoring. IET Wirel. Sens. Syst., 7:155–162, 2017.
- Human-robot interaction based on cloud computing infrastructure for senior companion. In TENCON 2011 - 2011 IEEE Region 10 Conference, pages 1431–1434, 2011.
- Human interaction smart subsystem—extending speech-based human-robot interaction systems with an implementation of external smart sensors. Sensors, 20(8):2376, 2020.
- Cloud-based multimodal human-robot interaction simulator utilizing ros and unity frameworks. In 2017 IEEE/SICE International Symposium on System Integration (SII), pages 948–955, 2017.
- Enhancing human-robot collaboration by exploring intuitive augmented reality design representations. arXiv preprint arXiv:2303.05539, 2023.
- S. Poonguzhali and Thandapani Gomathi. Design and implementation of ploughing and seeding of agriculture robot using iot. In Advances in Intelligent Systems and Computing, 2020.
- Internet of things-based devices/robots in agriculture 4.0. In Sustainable Communication Networks and Application: Proceedings of ICSCN 2021, pages 87–102. Springer, 2022.
- Innovative and efficient method of robotics for helping the parkinson’s disease patient using iot in big data analytics. Transactions on Emerging Telecommunications Technologies, 31(12):e3838, 2020.
- S Porkodi and D Kesavaraja. Healthcare robots enabled with iot and artificial intelligence for elderly patients. AI and IoT-Based Intelligent Automation in Robotics, pages 87–108, 2021.
- Distributed perception by collaborative robots. IEEE Robotics and Automation Letters, 3(4):3709–3716, 2018.
- Robot cloud: Bridging the power of robotics and cloud computing. Future Gener. Comput. Syst., 74:337–348, 2017.
- Internet of things (iot) based robotic arm. Int. Res. J. Eng. Technol, 4(03), 2017.
- Roslink: bridging ros with the internet-of-things for cloud robotics. Robot Operating System (ROS) The Complete Reference (Volume 2), pages 265–283, 2017.
- Iot-aided robotics applications: Technological implications, target domains and open issues. Computer Communications, 54:32–47, 2014.
- The internet of things: Foundational ethical issues. Internet Things, 1-2:55–66, 2018.
- Amanda J. C. Sharkey and Noel E. Sharkey. Granny and the robots: ethical issues in robot care for the elderly. Ethics and Information Technology, 14:27 – 40, 2010.