Manajemen Ketahanan Risiko Siber pada Internet of Things dan Cyber Physical System

Main Article Content

Amalia Nurain
Rudy A.G. Gultom
Richardus Eko Indrajit

Abstract

This research explores Cyber Risk Resilience Management on the Internet of Things (IoT) and Cyber Physical System (CPS). These two entities are closely linked to the internet, storing data about individuals or organizations. With cyberattacks on the rise, the impact can be direct, such as hardware damage, or indirect, such as reputation loss. The research aims to identify, assess, and manage cyber risks to maintain operational and system integrity. The literature study method was used to develop this approach. The results include how to identify attacks using the NIST framework with seven stages of incident recovery. This research provides a foundation for understanding and addressing cyber risks in IoT and CPS environments.

Article Details

How to Cite
Nurain, A., Gultom, R. A., & Eko Indrajit, R. (2024). Manajemen Ketahanan Risiko Siber pada Internet of Things dan Cyber Physical System. Journal on Education, 6(2), 13271-13281. https://doi.org/10.31004/joe.v6i2.5179
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References

TS2.Space. (n.d.). IoT Security: Case Studies & Lessons Learned from Real-World Incidents. https://ts2.space/en/iot-security-case-studies-lessons-learned-from-real-world-incidents/.
Cyber Management Alliance. (n.d.). IoT Security: 5 Cyber Attacks Caused by IoT Security Vulnerabilities. https://www.cm-alliance.com/cybersecurity-blog/iot-security-5-cyber-attacks-caused-by-iot-security-vulnerabilities.
Trend Micro. (2019). (n.d.). Inside the Smart Home: IoT Device Threats and Attack Scenarios. https://www.trendmicro.com/vinfo/fr/security/news/internet-of-things/inside-the-smart-home-iot-device-threats-and-attack-scenarios.
University of Hawaii at Manoa. (2021). Identifying Expertise Gaps in Cyber Incident Response: Cyber Defender Needs vs. Technological Development. https://scholarspace.manoa.hawaii.edu/server/api/core/bitstreams/52e41a12-1bf0-4570-8869-ce77993e644e/content.
Kure, H., Islam, S., & Razzaque, M. (2018). An Integrated Cyber Security Risk Management Approach for a Cyber-Physical System. Applied Sciences, 8(6), 898. MDPI AG. Retrieved from http://dx.doi.org/10.3390/app8060898.
Radanliev, P., De Roure, D.C., Maple, C., Nurse, J.R., Nicolescu, R., & Ani, U. (2019). Cyber Risk in IoT Systems. Preprints. https://doi.org/10.20944/preprints201903.0104.v1
Kim-Kwang Raymond Choo, Keke Gai, Luca Chiaraviglio, Qing Yang. (2021). A multidisciplinary approach to Internet of Things (IoT) cybersecurity and risk management. Computers & Security, 102, 102136. https://doi.org/10.1016/j.cose.2020.102136
Kaspersky. (2019). Mirai Enterprise: Kaspersky launches solution for powerful and highly flexible IoT and ICS/SCADA device protection. Kaspersky Lab. https://www.kaspersky.com/blog/mirai-enterprise/26032/
Shetty, S., McShane, M., Zhang, L., Kesan, J. P., Kamhoua, C. A., Kwiat, K., & Njilla, L. L. (2018). Reducing informational disadvantages to improve cyber risk management. The Geneva Papers on Risk and Insurance-Issues and Practice, 43, 224-238.
Pivoto, D. G. S., de Almeida, L. F. F., da Rosa Righi, R., Rodrigues, J. J. P. C., Lugli, A. B., & Alberti, A. M. (2021). Cyber-physical systems architectures for industrial internet of things applications in Industry 4.0: A literature review. Journal of Manufacturing Systems, 58, 176–192. doi:10.1016/j.jmsy.2020.11.017
H. Xu, W. Yu, D. Griffith and N. Golmie, "A Survey on Industrial Internet of Things: A Cyber-Physical Systems Perspective," in IEEE Access, vol. 6, pp. 78238-78259, 2018, doi: 10.1109/ACCESS.2018.2884906.
D. Ratasich, F. Khalid, F. Geissler, R. Grosu, M. Shafique and E. Bartocci, "A Roadmap Toward the Resilient Internet of Things for Cyber-Physical Systems," in IEEE Access, vol. 7, pp. 13260-13283, 2019, doi: 10.1109/ACCESS.2019.2891969.
M. Wolf and D. Serpanos, "Safety and Security in Cyber-Physical Systems and Internet-of-Things Systems," in Proceedings of the IEEE, vol. 106, no. 1, pp. 9-20, Jan. 2018, doi: 10.1109/JPROC.2017.2781198.
Sadeghi, A.-R., Wachsmann, C., & Waidner, M. (2015). Security and Privacy Challenges in Industrial Internet of Things. Proceedings of the 52nd Annual Design Automation Conference. Presented at the San Francisco, California. doi:10.1145/2744769.2747942
Volkan Gunes, Steffen Peter, Tony Givargis, and Frank Vahid. 2014. A Survey on Concepts, Applications, and Challenges in Cyber-Physical Systems. doi: 10.3837/tiis.0000.00.000
Jiafu Wan, Hehua Yan, Hui Suo, and Fang Li. 2011. Advances in Cyber-Physical Systems Research. doi: 10.3837/tiis.2011.11.001
George Matta, Sebastian Chlup, Abdelkader Magdy Shaaban, Christoph Schmittner, Andreas Pinzenöhler, Elke Szalai and Markus Tauber. 2021. Risk Management and Standard Compliance for Cyber-Physical Systems of Systems. doi: 10.36244/ICJ.2021.2.5
D. Ratasich, F. Khalid, F. Geissler, R. Grosu, M. Shafique and E. Bartocci, "A Roadmap Toward the Resilient Internet of Things for Cyber-Physical Systems," in IEEE Access, vol. 7, pp. 13260-13283, 2019, doi: 10.1109/ACCESS.2019.2891969.
Radanliev, P., De Roure, D. C., Nicolescu, R., Huth, M., Montalvo, R. M., Cannady, S., & Burnap, P. (2018). Future developments in cyber risk assessment for the internet of things. Computers in Industry, 102, 14–22. doi:10.1016/j.compind.2018.08.002
J. Franco, A. Aris, B. Canberk and A. S. Uluagac, "A Survey of Honeypots and Honeynets for Internet of Things, Industrial Internet of Things, and Cyber-Physical Systems," in IEEE Communications Surveys & Tutorials, vol. 23, no. 4, pp. 2351-2383, Fourthquarter 2021, doi: 10.1109/COMST.2021.3106669.
NZ Jhanjhi,, Mamoona Humayun, and Saleh N. Almuayqil. 2021. Cyber Security and Privacy Issues in Industrial Internet of Things. doi: 10.32604/csse.2021.015206.