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Cyber Physical System: Achievements and challenges

Published: 07 March 2020 Publication History

Abstract

Cyber-Physical System (CPS) is a new generation of physical, biological and engineered systems which use the computing and communication core to monitor, coordinate, control and integrate their operations. This plays a key role for developing the smart plants in industry 4.0. For more clarification on it, the paper will have a review on its architecture, applications and challenges.

References

[1]
Ahmadi, A., Cherifi, C., Cheutet, V., Ouzrout, Y. 2017. A Review of CPS 5 Components Architecture for Manufacturing Based on Standards. 11th IEEE International Conference on Software, Knowledge, Information Management and Applications (SKIMA 2017), (Dec 2017). Colombo, Sri Lanka. DOI= https://doi.org/10.1109/SKIMA.2017.8294091.
[2]
Al-Omari, H., Wolff, F., Papachristou, C., McIntyre, D. 2009. Avoiding Delay Jitter in Cyber-Physical Systems Using One Way Delay Variations Model. 2009 International Conference on Computational Science and Engineering. Vancouver, BC, Canada, 295--302. DOI= https://doi.org/10.1109/CSE.2009.481.
[3]
Cardenas, A.A., Amin, S., Sastry S., 2008. Secure control: Towards survivable cyber-physical systems. In Proc. 28th Int. Conf. Distributed Computing Systems Workshops. Beijing, China, (2008). 495--500. DOI=https://doi.org/10.1109/ICDCS.Workshops.2008.40.
[4]
Dabholkar, A., Gokhale, A. 2009. An approach to middleware specialization for cyber physical systems. In Proc. 29th IEEE Int. Conf. Distributed Computing Systems Workshops, Montreal, QC, Canada (2009). 73--79. DOI= https://doi.org/10.1109/ICDCSW.2009.70.
[5]
Gill, C. 2007. Cyber-physical system software for HCMDSS. In Proc. Joint Workshop on High Confidence Medical Devices, Software, and Systems Medical Device Plug-and-Play Interoperability, Boston, MA, (2007). 176--177. DOI= https://doi.org/10.1109/HCMDSS-MDPnP.2007.30.
[6]
Lee, E. A. 2007. Computing Foundations and Practice for CyberPhysical Systems: A Preliminary Report. Electrical Engineering and Computer Sciences. University of California at Berkeley.
[7]
Lee, E. A. 2010. CPS Foundations. Design Automation Conference. (June 2010). Anaheim, California, USA, 737--742. DOI= https://doi.org/10.1145/1837274.1837462.
[8]
Lee, E. A. 2015. The Past, Present and Future of Cyber-Physical Systems: A Focus on Models. In Sensors 2015, 4837--4869. DOI= https://doi.org/10.3390/s150304837
[9]
Lee, E. A, Seshia, S. A. 2011. Introduction to Embedded Systems - A Cyber--Physical Systems Approach. University of California at Berkeley.
[10]
Lee, J., Azamfar, M., Singh, J. 2019. A blockchain enabled Cyber-Physical System architecture for Industry 4.0 manufacturing systems. In Manufacturing Letters, Vol-20 (April 2019). 34--39. DOI= https://doi.org/10.1016/j.mfglet.2019.05.003.
[11]
Leng, J., Zhang H., Yan D., Liu, Q., Chen, X., and Zhang, D. 2018, Digital twin-driven manufacturing cyber-physical system for parallel controlling of smart workshop. In Journal of Ambient Intelligence and Humanized Computing, Vol-10. (May 2018). 1155--1166. DOI= https://doi.org/10.1007/s12652-018-0881-5.
[12]
Lin, J., Sedigh, S., Miller, A. 2009. Towards integrated simulation of cyber-physical systems: a case study on intelligent water distribution. In Proc. 8th IEEE Int. Conf. Dependable, Autonomic and Secure Computing, Chengdu, China, (2009). 690--695. DOI= https://doi.org/10.1109/DASC.2009.140.
[13]
Magno, M., Polonelli, T., Benini, L., Popovici, E. 2015. A Low Cost, Highly Scalable Wireless Sensor Network Solution to Achieve Smart LED Light Control for Green Buildings. In IEEE Sensors Journal, Vol. 15, No. 5, (May 2015). 2963--2973. DOI= https://doi.org/10.1109/JSEN.2014.2383996.
[14]
Márquez, A. C., Macchi, M., and Parlikad A. K. 2019. Value Based and Intelligent Asset Management. Seville, Spain. DOI= https://doi.org/10.1007/978-3-030-20704-5.
[15]
Mo, Y., Kim T. H., Brancik, K., Dickinson, D., Lee, H., Perrig, A., Sin, B. 2012. Proceedings of the IEEE, Vol. 100, No. 1 (Jan, 2012). 195--209. DOI= https://doi.org/10.1109/JPROC.2011.2161428.
[16]
Mohan, S., Bak, S., Betti, E., Yun, H., Sha, L., Caccamo, M. 2013. HiCoNS'13. (April, 2013). Philadelphia, Pennsylvania, USA, 65--74. DOI= 10.1145/2461446.2461456.
[17]
Ning, H., Liu, H. 2012. Cyber-Physical-Social Based Security Architecture for Future Internet of Things. In Advances in Internet of Things (2012). 1--7. DOI= http://dx.doi.org/10.4236/ait.2012.21001.
[18]
Shi, J. H., Wan, J. F., Yan, H. H., Suo, H. 2011, A survey of cyber-physical systems. In Proc. 2011 Int. Conf. IEEE Wireless Communications and Signal Processing (WCSP), Nanjing, China, 1--6. DOI= https://doi.org/10.1109/WCSP.2011.6096958.
[19]
Singh, C., Sprintson, A. 2010. Reliability Assurance of Cyber-Physical Power Systems. IEEE PES General Meeting. Providence, RI, USA, 2010. DOI= https://doi.org/10.1109/PES.2010.5590189.
[20]
Schmidta, M., Åhlundb, C. 2018. Smart buildings as Cyber-Physical Systems: Data-driven predictive control strategies for energy efficiency. Renewable and Sustainable Energy Reviews. Vol.90, (July 2018). 742--756. DOI= https://doi.org/10.1016/j.rser.2018.04.013.
[21]
Thacker, R. A., Jones, K. R., Myers, C. J., Zheng H. 2010. Automatic Abstraction for Verification of Cyber-Physical Systems. ICCPS'10. 2010. 12--21. DOI= 10.1145/1795194.1795197.
[22]
Vicaire, P. A., Hoque, E., Xie, Z. H., Stankovic, J. A. 2012. Bundle: A group-based programming abstraction for cyber-physical systems. In IEEE Transactions on Industrial Informatics, vol. 8, no. 2. (May 2012).379--392. DOI= https://doi.org/10.1109/TII.2011.2166772.
[23]
Wang, E. K., Ye, Y., Xu, X., Yiu, S.M., Hui, L.C.K., Chow, K.P. 2010. Security Issues and Challenges for Cyber Physical System. In 2010 IEEE/ACM International Conference on Green Computing and Communications & 2010 IEEE/ACM International Conference on Cyber, Physical and Social Computing. Hangzhou, China. 733--738. DOI= https://doi.org/10.1109/GreenCom-CPSCom.2010.36.
[24]
Wang, S., Zhang, Y., Yang, Z., Chen, Y. 2016. A Graphical Hierarchical CPS Architecture. In 2016 International Symposium on System and Software Reliability. (2016) 97--105. DOI= https://doi.org/10.1109/ISSSR.2016.024.
[25]
Wen, W., Zhao, S., Shang, C., and Chang, C.Y. 2018. EAPC: Energy-Aware Path Construction for Data Collection Using Mobile Sink in Wireless Sensor Networks. IEEE SENSORS JOURNAL, VOL. 18, NO. 2 (Jan 2018). DOI= https://doi.org/10.1109/JSEN.2017.2773119.
[26]
Woo, H, Yi, J. L., Browne, J. C., Mok, A. K., Atkins E., Xie, F. 2008. Design and development methodology for resilient cyber-physical systems. In Proc. 28th Int. Conf. Distributed Computing Systems Workshops, Beijing, China, (2008). 525--528. DOI= https://doi.org/10.1109/ICDCS.Workshops.2008.62.
[27]
Yu, X., Xue, Y. 2016. Smart Grids: A Cyber-Physical Systems Perspective. In Proceedings of the IEEE, Vol. 104, No. 5 (May 2016). 1058--1070. DOI= https://doi.org/10.1109/JPROC.2015.2503119.
[28]
Zhang, Y., Qiu, M., Tsai, C., Hassan, M. M., Alamri, A. 2017. Health-CPS: Healthcare Cyber-Physical System Assisted by Cloud and Big Data. In IEEE Systems Journal · (August 2015). 1--8. DOI= https://doi.org/10.1109/JSYST.2015.2460747.
[29]
Zhu, Q., Rieger, C., Basar, T. 2011. A Hierarchical Security Architecture for Cyber-Physical Systems. 2011 4th International Symposium on Resilient Control Systems. Boise, ID, USA (2011). DOI= https://doi.org/10.1109/ISRCS.2011.6016081.

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  • (2024)Work-in-Progress: A Systematic Literature Review of Exploring Threshold Concepts in Cyber-Physical Systems Education2024 IEEE Frontiers in Education Conference (FIE)10.1109/FIE61694.2024.10893332(1-5)Online publication date: 13-Oct-2024
  • (2023)A Context Ontology-Based Model to Mitigate Root Causes of Uncertainty in Cyber-Physical SystemsDatabase and Expert Systems Applications - DEXA 2023 Workshops10.1007/978-3-031-39689-2_5(45-56)Online publication date: 21-Aug-2023
  • (2023)Uncertainty handling in cyber–physical systemsJournal of Software: Evolution and Process10.1002/smr.242835:7Online publication date: 2-Jul-2023
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    cover image ACM Other conferences
    ICMLSC '20: Proceedings of the 4th International Conference on Machine Learning and Soft Computing
    January 2020
    175 pages
    ISBN:9781450376310
    DOI:10.1145/3380688
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    Published: 07 March 2020

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    Author Tags

    1. CPS
    2. Cyber Physical System
    3. Information processing
    4. System Architecture
    5. security
    6. software system

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    View all
    • (2024)Work-in-Progress: A Systematic Literature Review of Exploring Threshold Concepts in Cyber-Physical Systems Education2024 IEEE Frontiers in Education Conference (FIE)10.1109/FIE61694.2024.10893332(1-5)Online publication date: 13-Oct-2024
    • (2023)A Context Ontology-Based Model to Mitigate Root Causes of Uncertainty in Cyber-Physical SystemsDatabase and Expert Systems Applications - DEXA 2023 Workshops10.1007/978-3-031-39689-2_5(45-56)Online publication date: 21-Aug-2023
    • (2023)Uncertainty handling in cyber–physical systemsJournal of Software: Evolution and Process10.1002/smr.242835:7Online publication date: 2-Jul-2023
    • (2021)A Conceptual Model for Mitigation of Root Causes of Uncertainty in Cyber-Physical SystemsDatabase and Expert Systems Applications - DEXA 2021 Workshops10.1007/978-3-030-87101-7_2(9-17)Online publication date: 20-Sep-2021

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