On Cyberattacks on Charging Stations
Abstract
Full Text:
PDF (Russian)References
M. Stulov, "Kolichestvo zarjadok dlja jelektromobilej v Moskve vyrastet na 11000," in: Vedomosti, [Online]. 23 Oct. 2023. Available: https://www.vedomosti.ru/gorod/smartcity/articles/kolichestvo-zaryadok-dlya-elektromobilei-v-moskve-virastet-na-11-000. Retrieved: Jan, 2025 (In Russ.)
"Outlook for electric vehicle charging infrastructure," in: Global EV Outlook 2024, [Online]. Paris: IEA, 2024. Available: https://www.iea.org/reports/global-ev-outlook-2024/outlook-for-electric-vehicle-charging-infrastructure. Retrieved: Jan, 2025
G. V. Babajan, "Analysis of the impact of electric charging infrastructure on the mass introduction of electric vehicles in major cities in the United States and Europe", Universum: tehnicheskie nauki, no. 10-3(127), pp. 52-63, 2024. (In Russ., abstract in Eng.) EDN: GDEFQX
D. Pevec, J. Babic, A. Carvalho, Y. Ghiassi-Farrokhfal, W. Ketter, and V. Podobnik, "Electric Vehicle Range Anxiety: An Obstacle for the Personal Transportation (R)evolution?" in: 2019 4th International Conference on Smart and Sustainable Technologies (SpliTech), Split, Croatia: IEEE Press, 2019, pp. 1-8, doi: 10.23919/SpliTech.2019.8783178.
"Kriticheskaja informacionnaja infrastruktura Rossii", in: TAdviser, [Online]. 2025. Available: https://www.tadviser.ru/index.php/ Статья:Критическая_информационная_инфраструктура_России. Retrieved: Jan, 2025 (In Russ.)
M. Eisel, J. Schmidt, and L. M. Kolbe, "Finding suitable locations for charging stations," in: 2014 IEEE International Electric Vehicle Conference (IEVC), Florence, Italy: IEEE Press, 2014, pp. 1-8, doi: 10.1109/IEVC.2014.7056134.
F.A. Bhat, G.Y. Tiwari, and A. Verma, "Preferences for public electric vehicle charging infrastructure locations: A discrete choice analysis," Transport Policy, vol. 149, pp. 177-197, 2024, doi: 10.1016/j.tranpol.2024.02.004.
G. Scoblete, "Electric Vehicles in Focus, Part V: The Evolving Cyber Threat to EV Charging Stations," in: Verisk Analytics, [Online]. Sep. 2023. Available: https://core.verisk.com/Insights/Emerging-Issues/Articles/2023/September/Week-4/The-Cyber-Risks-of-Electric-Vehicle-Charging-Stations. Retrieved: Jan, 2025
Isle of Wight: Council's electric vehicle chargers hacked to show porn site. [Online]. Available: https://www.bbc.com/news/uk-england-hampshire-61006816 Retrieved: Jan, 2025
M.J. Schwartz, "Electric Vehicle Charging Stations at Risk From Hack Attacks," ISMG, [Online]. Oct. 2024. Available: https://www.bankinfosecurity.com/electric-vehicle-charging-stations-at-risk-from-hack-attacks-a-26620. Retrieved: Jan, 2025
S.I. Jeong and D.-H. Choi, "Electric Vehicle User Data-Induced Cyber Attack on Electric Vehicle Charging Station," IEEE Access, vol. 10, pp. 55856-55867, 2022, doi: 10.1109/ACCESS.2022.3177842.
Z. Garofalaki, D. Kosmanos, S. Moschoyiannis, D. Kallergis, and C. Douligeris, "Electric Vehicle Charging: A Survey on the Security Issues and Challenges of the Open Charge Point Protocol (OCPP)," in IEEE Communications Surveys & Tutorials, vol. 24, no. 3, pp. 1504-1533, 2022, doi: 10.1109/COMST.2022.3184448.
Academic Program with Sberbank "Cybersecurity MSU-SBER", in: Faculty of Computational Mathematics and Cybernetics, Lomonosov Moscow State University, [Online]. 2025. Available: https://cyber.cs.msu.ru Retrieved: Jan, 2025 (In Russ.)
D.E. Namiot and V.A. Sukhomlin, "On Cybersecurity of the Internet of Things Systems," International Journal of Open Information Technologies, vol. 11, no. 2, pp. 85-97, 2023. (In Russ., abstract in Eng.) EDN: DCDCHM
D.E. Namiot, M. Sneps-Sneppe, and Y.I. Daradkeh, "On internet of things education," in: 2017 20th Conference of Open Innovations Association (FRUCT), St. Petersburg, Russia: IEEE Press, 2017, pp. 309-315, doi: 10.23919/FRUCT.2017.8071327.
K. Sarieddine, M.A. Sayed, S. Torabi, R. Atallah, and C. Assi, "Investigating the Security of EV Charging Mobile Applications as an Attack Surface," ACM Transactions on Cyber-Physical Systems, vol. 7, no. 4, Art. no. 26, 2023, doi: 10.1145/3609508.
F. Dehrouyeh, L. Yang, F. Badrkhani Ajaei, and A. Shami, "On TinyML and Cybersecurity: Electric Vehicle Charging Infrastructure Use Case," IEEE Access, vol. 12, pp. 108703-108730, 2024, doi: 10.1109/ACCESS.2024.3437192.
H. ElHussini, C. Assi, B. Moussa, R. Atallah, and A. Ghrayeb, "A Tale of Two Entities: Contextualizing the Security of Electric Vehicle Charging Stations on the Power Grid," ACM Transactions on Internet of Things, vol. 2, Art. no. 8, 2021, doi: 10.1145/3437258.
H. S. Das, et al., "Electric vehicles standards, charging infrastructure, and impact on grid integration: A technological review," Renewable and Sustainable Energy Reviews, vol. 120, Art. no. 109618, 2020, doi: 10.1016/j.rser.2019.109618.
R. Metere, et al., "Securing the Electric Vehicle Charging Infrastructure," 2022, arXiv:2105.02905, doi: 10.48550/arXiv.2105.02905.
J. Antoun, M. E. Kabir, B. Moussa, R. Atallah, and C. Assi, "A Detailed Security Assessment of the EV Charging Ecosystem," IEEE Network, vol. 34, no. 3, pp. 200-207, 2020, doi: 10.1109/MNET.001.1900348.
P. C. Balakrishnan, A. S. Pillai, "Design and development of smart interoperable electric vehicle supply equipment for electric mobility," International Journal of Electrical and Computer Engineering, vol. 13, no. 3, pp. 3509-3518, 2023. doi: 10.11591/ijece.v13i3.pp3509-3518.
A. Cardenas, "Cyber-Physical Systems Security Knowledge Area. Version 1.0.1," in: The Cyber Security Body Of Knowledge. [Online]. E. Lupu, Ed. The National Cyber Security Centre; 2021. 61 p. Available: https://www.cybok.org/media/downloads/Cyber_Physical_Systems-v1.0.1.pdf. Retrieved: Jan, 2025
A. M. Abu-Nassar and W. G. Morsi, "Early Detection of Cyber-Physical Attacks on Electric Vehicles Fast Charging Stations Using Wavelets and Deep Learning," IEEE Transactions on Industrial Cyber-Physical Systems, vol. 2, pp. 220-231, 2024, doi: 10.1109/TICPS.2024.3413605.
R. Gottumukkala, R. Merchant, A. Tauzin, K. Leon, A. Roche, and P. Darby, "Cyber-physical System Security of Vehicle Charging Stations," in: 2019 IEEE Green Technologies Conference(GreenTech), Lafayette, LA, USA: IEEE Press, 2019, pp. 1-5, doi: 10.1109/GreenTech.2019.8767141.
S. Hamdare, O. Kaiwartya, M. Aljaidi, M. Jugran, Y. Cao, S. Kumar, M. Mahmud, D. Brown, and J. Lloret, "Cybersecurity Risk Analysis of Electric Vehicles Charging Stations," Sensors, vol. 23, issue 15, Art. no. 6716, 2023, doi: 10.3390/s23156716.
S. Shirvani, Y. Baseri, and A. Ghorbani, "Evaluation Framework for Electric Vehicle Security Risk Assessment," IEEE Transactions on Intelligent Transportation Systems, vol. 25, no. 1, pp. 33-56, 2024, doi: 10.1109/TITS.2023.3307660.
M. Basnet and M. H. Ali, "Exploring cybersecurity issues in 5G enabled electric vehicle charging station with deep learning," IET Generation, Transmission & Distribution, vol. 15, issue 24, pp. 3435-3449, 2021, doi: 10.1049/gtd2.12275.
Y. Zhou, et al., "Malicious Mode Attack on Electric Vehicle Coordinated Charging and its Defense Strategy," Sustainable Energy, Grids and Networks, vol. 39, Art. no. 101440, 2024, doi: 10.1016/j.segan.2024.101440.
W. Liu, L. Li, and X. Li, "Power System Forced Oscillation Caused by Malicious Mode Attack via Coordinated Charging," in: 2022 IEEE/IAS Industrial and Commercial Power System Asia (I&CPS Asia), Shanghai, China: IEEE Press, 2022, pp. 1838-1844, doi: 10.1109/ICPSAsia55496.2022.9949689.
K. Gandhi and W. G. Morsi, "Impact of the Open Charge Point Protocol Between the Electric Vehicle and the Fast Charging Station on the Cybersecurity of the Smart Grid," in: 2022 IEEE Canadian Conference on Electrical and Computer Engineering (CCECE), Halifax, NS, Canada: IEEE Press, 2022, pp. 235-240, doi: 10.1109/CCECE49351.2022.9918406.
M. Girdhar, J. Hong, Y. Yoo, and T. -j. Song, "Machine Learning-Enabled Cyber Attack Prediction and Mitigation for EV Charging Stations," in: 2022 IEEE Power & Energy Society General Meeting (PESGM), Denver, CO, USA: IEEE Press, 2022, pp. 1-5, doi: 10.1109/PESGM48719.2022.9916914.
B. Kordy, S. Mauw, S. Radomirović, and P. Schweitzer, "Attack – defense trees," Journal of Logic and Computation, vol. 24, issue 1, pp. 55-87, 2014, doi: 10.1093/logcom/exs029.
B. Xu, Z. Zhong, and G. He, "A minimum defense cost calculation method for attack defense trees," Security and Communication Networks, vol. 2020, issue 1, Art. no. 8870734, 2020, doi: 10.1155/2020/8870734.
M. ElKashlan, H. Aslan, M. Said Elsayed, A. D. Jurcut, and M. A. Azer, "Intrusion Detection for Electric Vehicle Charging Systems (EVCS)," Algorithms, vol. 16, issue 2, Art. no. 75, 2023, doi: 10.3390/a16020075.
A. Thakkar and R. Lohiya, "A survey on intrusion detection system: feature selection, model, performance measures, application perspective, challenges, and future research directions," Artificial Intelligence Review, vol. 55, issue 1, pp. 453-563, 2022, doi: 10.1007/s10462-021-10037-9.
D. E. Namiot, "On Cyberattacks Using Artificial Intelligence Systems," International Journal of Open Information Technologies, vol. 12, no. 9, pp. 132-141, 2024. (In Russ., abstract in Eng.) EDN: PEEQXY
A. Elhanashi, P. Dini, S. Saponara, Q. Zheng, "Advancements in TinyML: Applications, Limitations, and Impact on IoT Devices," Electronics, vol. 13, issue 17, Art. no. 3562, 2024, doi: 10.3390/electronics13173562.
Refbacks
- There are currently no refbacks.
Abava Кибербезопасность ИБП для ЦОД СНЭ
ISSN: 2307-8162