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Ulaştırmanın Beşinci Modu: Hyperloop Sistemi ve Siber Güvenlik

Year 2025, Volume: 8 Issue: 1, 1 - 21, 25.03.2025
https://doi.org/10.51513/jitsa.1511769

Abstract

Hyperloop; kapsül adı verilen bileşenin manyetik kaldırma teknolojisi yardımıyla havada süzüldüğü, bir tüp içerisinde çok yüksek hızla hareket ettiği ve kapsülün kalkış ile varışlarının kontrol edildiği terminallerden oluşan yenilikçi bir kara ulaştırma modudur. Ultra yüksek hızlı, sürekli bir ulaştırma sistemi olan hyperloop; birbiri ile entegre ve birlikte çalışan birçok alt sistem içerdiğinden sağlam bir haberleşme altyapısına ihtiyaç duymaktadır. Haberleşme, entegrasyon ve dijitalleşme teknolojilerinin yoğun kullanıldığı ulaştırmanın bu modunun, emniyetli ve güvenli bir şekilde hizmet verebilmesi için hyperloop sistemini oluşturan haberleşme türlerinin siber saldırılara ve tehditlere karşı güvenli olması gerekmektedir. Bu çalışmada, hyperloop teknolojisine genel bir bakış yapılarak ulaştırmanın bu türünü oluşturan unsurların, kendi içinde ve dış dünya ile haberleşmesini sağlayan ağ altyapısı incelenmiştir. Hyperloop sistemini oluşturan haberleşme türleri, teknolojileri, ağ altyapısını oluşturan ağ katmanları ele alınarak haberleşme yöntemleri ve zorlukları değerlendirilmiştir. Hyperloop sistemini hedef alabilecek siber güvenlik saldırıları, siber güvenlik tehditleri ve risk azaltıcı stratejiler araştırılarak literatüre katkı sağlanması hedeflenmiştir. Ayrıca Türkiye’de hyperloop sistemi geliştirme girişimleri özetlenerek bu sistemin siber güvenliğini sağlamak için öneriler sunulmuştur. Bu çalışma, hyperloop teknolojisine, bu sistemi oluşturan haberleşme türlerine ve bunların siber güvenliği konularına odaklanan, güvenli bir hyperloop sistemi geliştirme çabalarına katkı sunmayı amaçlayan literatürdeki nadir çalışmalar arasındadır.

Ethical Statement

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Supporting Institution

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Thanks

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References

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  • Brighente, A., Conti, M., Donadel, D., & Turrin, F. (2024). Hyperloop: A Cybersecurity Perspective. https://doi.org/10.1109/EuroSPW61312.2024.00045
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  • CEN. (2023). JTC 20-CEN/CLC/TR 17912:2023, Hyperloop systems- Standards Inventory and Roadmap. https://www.cencenelec.eu/news-and-events/news/2023/eninthespotlight/2023-02-13-a-first-step-in-the-standardization-of-the-european-hyperloop-industry/
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  • Fokum, D. T., & Frost, V. S. (2010). A survey on methods for broadband internet access on trains. IEEE communications surveys & tutorials, 12(2), 171-185.
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  • Gkoumas, K., & Christou, M. (2020). Hyperloop in Europe: State of Play and Challenges. Proceedings of the 8th Transport Research Arena, TRA.
  • Hansen, I. A. (2020). Hyperloop Transport Technology Assessment and System Analysis. Transportation Planning and Technology, 43(8), 803-820. https://doi.org/10.1080/03081060.2020.1828935
  • HARDT. (2024). Hyperloop is the most environmentally friendly solution. Erişim tarihi 24 Eylül 2024, https://www.hardt.global/
  • Hedhly, W., Amin, O., Shihada, B., & Alouini, M.-S. (2021). Hyperloop Communications: Challenges, Advances, and Approaches. IEEE Open Journal of the Communications Society, 2, 2413-2435.
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  • ISO. (2021). ISO/SAE 21434:2021- Road vehicles- Cybersecurity engineering, International Organization for Standardization, Geneva, CH, Standard. https://www.iso.org/standard/70918.html
  • Kale, S. (2019). Hyperloop: Advance Mode of Transportation System and Optimize Solution on Traffic Congestion. International Journal for Research in Applied Science and Engineering Technology. 7. 539-552. 10.22214/ijraset.2019.7085.
  • Kaur, K., Singh, J., & Ghumman, N. S. (2014). Mininet as software defined networking testing platform. International conference on communication, computing & systems (ICCCS), 139-142.
  • Li, P., Niu, Y., Wu, H., Han, Z., Wang, Y., Wang, N., Zhong, Z., & Ai, B. (2024). Scheduling of Millimeter Wave Communications for Ultra-High-Speed Vacuum Tube Train. IEEE Transactions on Vehicular Technology.
  • Mitropoulos, L., Kortsari, A., Koliatos, A., & Ayfantopoulou, G. (2021). The Hyperloop System and Stakeholders: A Review and Future Directions. Sustainability, 13(15), 8430.
  • Musk, E. (2013). Hyperloop Preliminary Design Study Technical Section. Hyperloop Alpha. https://www.tesla.com/sites/default/files/blog_images/hyperloop-alpha.pdf
  • National Cyber Security Centre. (2019). Secure design principles. https://www.ncsc.gov.uk/collection/cyber-security-design-principles
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  • NEVOMO. (2024). Projects for a new passenger and freight. Erişim tarihi 24 Eylül 2024, https://www.nevomo.tech/en/vehicles/
  • Nøland, J. K. (2021). Prospects and Challenges of the Hyperloop Transportation System: A Systematic Technology Review. IEEE Access, 9, 28439-28458. https://doi.org/10.1109/ACCESS.2021.3057788
  • Nøland, J. K. (2024). A Reality Check on Maglev Technology for the Hyperloop Transportation System: Status Update After a Decade of Development. IEEE Access.
  • Özbek, R., & Çodur, Y. M. (2021). Comparison of Hyperloop and Existing Transport Vehicles in Terms of Security and Costs. Modern Transportation Systems and Technologies, 7(3), 5-29. https://doi.org/https://doi.org/10.17816/transsyst2021735-29
  • Platin. (2023). Sürdürülebilir ve çevre dostu yeni ulaşım konsepti Hyperloop’ta Türk imzası. https://www.platinonline.com/sektorler/surdurulebilir-ve-cevre-dostu-yeni-ulasim-konsepti-hyperloopta-turk-imzasi-1087505
  • Premsagar, S., & Kenworthy, J. (2022). A Critical Review of Hyperloop (Ultra-High Speed Rail) Technology: Urban and Transport Planning, Technical, Environmental, Economic, and Human Considerations. Frontiers in Sustainable Cities, 4. https://doi.org/10.3389/frsc.2022.842245
  • Qiu, C., Liu, L., Han, B., Zhang, J., Li, Z., & Zhou, T. (2020). Broadband wireless communication systems for vacuum tube high-speed flying train. Applied Sciences, 10(4), 1379.
  • RiskXChange. (2023). A guide to cybersecurity metrics and KPIs. https://riskxchange.co/1006911/a-guide-to-cybersecurity-metrics-and-kpis/
  • Rob, M. A., Sagar, A. S. M., & Uddin, M. N. (2019). Prospects of Hyperloop Transportation Technology: A Case of China. International Journal of Engineering and Management Research.
  • Sniady, A., & Soler, J. (2014). Capacity gain with an alternative LTE railway communication network. 2014 7th International Workshop on Communication Technologies for Vehicles (Nets4Cars-Fall), 54-58. https://doi.org/10.1109/Nets4CarsFall.2014.7000913
  • swisspod. (2024). Preliminary Testing For the World’s Longest Hyperloop Mission. Erişim tarihi 24 Eylül 2024, https://www.swisspod.com/our-journey
  • Tavsanoglu, A., Briso, C., Carmena-Cabanillas, D., & Arancibia, R. B. (2021). Concepts of Hyperloop Wireless Communication at 1200 km/h: 5G, Wi-Fi, Propagation, Doppler and Handover. Energies, 14(4), 983.
  • T.C. Cumhurbaşkanlığı Dijital Dönüşüm Ofisi. (2020). Yeni Nesil Ulaşım Teknolojisi Hyperloop. https://cbddo.gov.tr/SharedFolderServer/Genel/3.Aras%CC%A7t%C4%B1rma-Raporu-Yeni-Nesil-Ulas%CC%A7%C4%B1m-Teknolojisi-Hyperloop.pdf
  • TEKNOFEST. (2022). Hyperloop Geliştirme Yarışması. https://www.teknofest.org/tr/yarismalar/hyperloop-gelistirme-yarismasi/
  • TEKNOFEST. (2024). Geleceğin Ulaşım Teknolojisi TÜBİTAK Hyperloop Geliştirme Yarışması Sona Erdi. https://www.teknofest.org/tr/yarismalar/hyperloop-gelistirme-yarismasi/
  • Thompson, P. J. (2019). A Scientific and Economic Analysis of the Hyperloop as it Pertains to Mass Transportation. http://rave.ohiolink.edu/etdc/view?acc_num=case1560510307453676
  • Turrin, F. (2023). Cybersecurity of Modern Cyber-Physical Systems.
  • U.S. Department of Energy. (2021). Effect of Hyperloop Technologies on the Electric Grid and Transportation Energy. USDOE Office of Energy Efficiency and Renewable Energy (EERE), Washington …. https://www.osti.gov/biblio/1773025/
  • UTIKAD. (2022). Erciyas ve Çimtaş, Hyperlooptt’e Tedarikçi ve Yatırımcı Oldu. https://www.utikad.org.tr/Detay/Sektor-Haberleri/30900/erciyas-ve-cimtas-hyperlooptt-e-tedarikci-ve-yatirimci-oldu
  • TRANSPOD. (2024). TransPod system. Erişim tarihi 24 Eylül 2024, https://www.transpod.com/transpod-system/
  • TUM Hyperloop. (2023). Ultra-fast connections between mobility hubs. Erişim tarihi 25 Kasım 2024, https://tumhyperloop.com/about-hyperloop/
  • zeleros. (2024). We develop hyperloop Technologies. Erişim tarihi 24 Eylül 2024, https://zeleros.com/hyperloop/
  • Zhang, J., Liu, L., Han, B., Li, Z., Zhou, T., Wang, K., Wang, D., & Ai, B. (2020). Concepts on train-to-ground wireless communication system for hyperloop: Channel, network architecture, and resource management. Energies, 13(17), 4309.

Fifth Mode of Transportation: Hyperloop System and Cyber Security

Year 2025, Volume: 8 Issue: 1, 1 - 21, 25.03.2025
https://doi.org/10.51513/jitsa.1511769

Abstract

Hyperloop is an innovative mode of land transport in which the component called capsule floats in the air with the help of magnetic levitation technology, moves at very high speed in a tube and consists of terminals where the departure and arrival of the capsule are controlled. Hyperloop, which is an ultra-high-speed continuous transport system, requires a robust communication infrastructure as it includes many subsystems that are integrated with each other and work together. In order for this mode of transportation, where communication, integration and digitalization technologies are used intensively, to provide safe and secure service, the communication types that make up the hyperloop system must be secure against cyber attacks and threats. In this study, an overview of hyperloop technology is made and the network infrastructure that enables the elements that make up this mode of transport to communicate within themselves and with the outside world is examined. The communication types, technologies, network layers that make up the hyperloop system, communication methods and difficulties are evaluated. It is aimed to contribute to the literature by investigating cyber security attacks, cyber security threats and risk mitigation strategies that may target the hyperloop system. In addition, hyperloop system development initiatives in Türkiye are summarized and recommendations are presented to ensure the cyber security of this system. This study is one of the rare studies in the literature that focuses on hyperloop technology, the communication types that make up this system and their cyber security issues, aiming to contribute to the efforts to develop a secure hyperloop system.

References

  • Armağan, K. (2020). The fifth Mode of Transportation: Hyperloop. Journal of innovative transportation, 1(1), 1105.
  • AUTOSAR. (2023). Explanation of Safety Overview. https://www.autosar.org/fileadmin/standards/R23-11/FO/AUTOSAR_FO_EXP_SafetyOverview.pdf
  • Brighente, A., Conti, M., Donadel, D., & Turrin, F. (2022). Hyperloop: A Cybersecurity Perspective. arXiv preprint arXiv:2209.03095.
  • Brighente, A., Conti, M., Donadel, D., & Turrin, F. (2024). Hyperloop: A Cybersecurity Perspective. https://doi.org/10.1109/EuroSPW61312.2024.00045
  • Catherine, T., Barr, L. C., & By Hyde, D. J. (2016). Hyperloop Commercial Feasibility Analysis : High Level Overview. https://rosap.ntl.bts.gov/view/dot/12308
  • CEN. (2023). JTC 20-CEN/CLC/TR 17912:2023, Hyperloop systems- Standards Inventory and Roadmap. https://www.cencenelec.eu/news-and-events/news/2023/eninthespotlight/2023-02-13-a-first-step-in-the-standardization-of-the-european-hyperloop-industry/
  • CLC. (2023). CLC/TS 50701:2023, Railway applications-Cybersecurity, European Committee For Electrotechnical Standardization, Brussels, Belgium.
  • Delft Hyperloop. (2019). The Future of Hyperloop. https://hyperloopconnected.org/2019/06/report-the-future-of-hyperloop/
  • Delft Hyperloop. (2020). Safety Framework for the European Hyperloop Network. Içinde Hyperloop Connected. https://hyperloopconnected.org/2020/07/report-safety-framework-for-the-european-hyperloop-network/
  • DGWHyperloop. (2024). Developing the future of high-speed transportation. Erişim tarihi 25 Kasım 2024, https://www.dgwhyperloop.in/careers.html
  • euroTUBE. (2024). Hyperloop A new mode of transport. Erişim tarihi 25 Kasım 2024, https://eurotube.org/hyperloop/
  • Fokum, D. T., & Frost, V. S. (2010). A survey on methods for broadband internet access on trains. IEEE communications surveys & tutorials, 12(2), 171-185.
  • Gazi Üniversitesi. (2022). TEKNOFEST’te Üniversitemiz Teknoloji Fakültesi Öğrencilerinden Büyük Başarı “Türkiye’nin En Hızlısı Turkuaz Hyperloop”. https://gazi.edu.tr/view/news/289802/teknofest-te-universitemiz-teknoloji-fakultesi-ogrencilerinden-buyuk-basari-turkiye-nin-en-hizlisi-turkuaz-hyperloop-
  • Gheth, W., Rabie, K. M., Adebisi, B., Ijaz, M., & Harris, G. (2021). Communication systems of high‐speed railway: a survey. Transactions on Emerging Telecommunications Technologies, 32(4), e4189.
  • Gkoumas, K. (2021). Hyperloop Academic Research: A Systematic Review and a Taxonomy of Issues. Applied Sciences, 11(13). https://doi.org/10.3390/app11135951
  • Gkoumas, K., & Christou, M. (2020). Hyperloop in Europe: State of Play and Challenges. Proceedings of the 8th Transport Research Arena, TRA.
  • Hansen, I. A. (2020). Hyperloop Transport Technology Assessment and System Analysis. Transportation Planning and Technology, 43(8), 803-820. https://doi.org/10.1080/03081060.2020.1828935
  • HARDT. (2024). Hyperloop is the most environmentally friendly solution. Erişim tarihi 24 Eylül 2024, https://www.hardt.global/
  • Hedhly, W., Amin, O., Shihada, B., & Alouini, M.-S. (2021). Hyperloop Communications: Challenges, Advances, and Approaches. IEEE Open Journal of the Communications Society, 2, 2413-2435.
  • HyperloopTT. (2024). Hyperloop Transportation Technologies. Erişim tarihi 25 Kasım 2024, https://www.hyperlooptt.com/
  • Hyperloop Development Program. (2024). The Hyperloop development program. Erişim tarihi 25 Kasım 2024, https://www.hyperloopdevelopmentprogram.com/questions-hdp
  • Hyperloop Italia. (2024). Firma del contratto tra cav e hyper builders per lo studio di fattibilità
del progetto futuristico hyperloop in italia. Erişim tarihi 24 Eylül 2024, https://hyperloopitalia.com/media/comunicati-stampa/firma-del-contratto-tra-cav-e-hyper-builders-per-lo-studio-di-fattibilita%e2%80%a8del-il-progetto-futuristico-hyperloop-in-italia/
  • Icomera. (2021). HyperloopTT Connects with Icomera TraXsideTM for Wireless Communications. Erişim tarihi 12 Mart 2024, gönderen https://www.icomera.com/hyperlooptt-connects-with-icomera-traxside-for-wireless-communications/
  • ISA. (2019). ISA/IEC 62443 Series of Standards. https://www.isa.org/standards-and-publications/isa-standards/isa-iec-62443-series-of-standards
  • ISO. (2018). ISO/IEC 27000:2018 Information technology-Security techniques-Information security management systems-Overview and vocabulary, Geneva. https://www.iso.org/standard/73906.html.
  • ISO. (2021). ISO/SAE 21434:2021- Road vehicles- Cybersecurity engineering, International Organization for Standardization, Geneva, CH, Standard. https://www.iso.org/standard/70918.html
  • Kale, S. (2019). Hyperloop: Advance Mode of Transportation System and Optimize Solution on Traffic Congestion. International Journal for Research in Applied Science and Engineering Technology. 7. 539-552. 10.22214/ijraset.2019.7085.
  • Kaur, K., Singh, J., & Ghumman, N. S. (2014). Mininet as software defined networking testing platform. International conference on communication, computing & systems (ICCCS), 139-142.
  • Li, P., Niu, Y., Wu, H., Han, Z., Wang, Y., Wang, N., Zhong, Z., & Ai, B. (2024). Scheduling of Millimeter Wave Communications for Ultra-High-Speed Vacuum Tube Train. IEEE Transactions on Vehicular Technology.
  • Mitropoulos, L., Kortsari, A., Koliatos, A., & Ayfantopoulou, G. (2021). The Hyperloop System and Stakeholders: A Review and Future Directions. Sustainability, 13(15), 8430.
  • Musk, E. (2013). Hyperloop Preliminary Design Study Technical Section. Hyperloop Alpha. https://www.tesla.com/sites/default/files/blog_images/hyperloop-alpha.pdf
  • National Cyber Security Centre. (2019). Secure design principles. https://www.ncsc.gov.uk/collection/cyber-security-design-principles
  • National Security Agency. (2020, Eylül 16). Kuantum Anahtar Dağıtımı ve Kuantum Kriptografi. https://www.nsa.gov/Cybersecurity/Quantum-Key-Distribution-QKD-and-Quantum-Cryptography-QC/
  • NEVOMO. (2024). Projects for a new passenger and freight. Erişim tarihi 24 Eylül 2024, https://www.nevomo.tech/en/vehicles/
  • Nøland, J. K. (2021). Prospects and Challenges of the Hyperloop Transportation System: A Systematic Technology Review. IEEE Access, 9, 28439-28458. https://doi.org/10.1109/ACCESS.2021.3057788
  • Nøland, J. K. (2024). A Reality Check on Maglev Technology for the Hyperloop Transportation System: Status Update After a Decade of Development. IEEE Access.
  • Özbek, R., & Çodur, Y. M. (2021). Comparison of Hyperloop and Existing Transport Vehicles in Terms of Security and Costs. Modern Transportation Systems and Technologies, 7(3), 5-29. https://doi.org/https://doi.org/10.17816/transsyst2021735-29
  • Platin. (2023). Sürdürülebilir ve çevre dostu yeni ulaşım konsepti Hyperloop’ta Türk imzası. https://www.platinonline.com/sektorler/surdurulebilir-ve-cevre-dostu-yeni-ulasim-konsepti-hyperloopta-turk-imzasi-1087505
  • Premsagar, S., & Kenworthy, J. (2022). A Critical Review of Hyperloop (Ultra-High Speed Rail) Technology: Urban and Transport Planning, Technical, Environmental, Economic, and Human Considerations. Frontiers in Sustainable Cities, 4. https://doi.org/10.3389/frsc.2022.842245
  • Qiu, C., Liu, L., Han, B., Zhang, J., Li, Z., & Zhou, T. (2020). Broadband wireless communication systems for vacuum tube high-speed flying train. Applied Sciences, 10(4), 1379.
  • RiskXChange. (2023). A guide to cybersecurity metrics and KPIs. https://riskxchange.co/1006911/a-guide-to-cybersecurity-metrics-and-kpis/
  • Rob, M. A., Sagar, A. S. M., & Uddin, M. N. (2019). Prospects of Hyperloop Transportation Technology: A Case of China. International Journal of Engineering and Management Research.
  • Sniady, A., & Soler, J. (2014). Capacity gain with an alternative LTE railway communication network. 2014 7th International Workshop on Communication Technologies for Vehicles (Nets4Cars-Fall), 54-58. https://doi.org/10.1109/Nets4CarsFall.2014.7000913
  • swisspod. (2024). Preliminary Testing For the World’s Longest Hyperloop Mission. Erişim tarihi 24 Eylül 2024, https://www.swisspod.com/our-journey
  • Tavsanoglu, A., Briso, C., Carmena-Cabanillas, D., & Arancibia, R. B. (2021). Concepts of Hyperloop Wireless Communication at 1200 km/h: 5G, Wi-Fi, Propagation, Doppler and Handover. Energies, 14(4), 983.
  • T.C. Cumhurbaşkanlığı Dijital Dönüşüm Ofisi. (2020). Yeni Nesil Ulaşım Teknolojisi Hyperloop. https://cbddo.gov.tr/SharedFolderServer/Genel/3.Aras%CC%A7t%C4%B1rma-Raporu-Yeni-Nesil-Ulas%CC%A7%C4%B1m-Teknolojisi-Hyperloop.pdf
  • TEKNOFEST. (2022). Hyperloop Geliştirme Yarışması. https://www.teknofest.org/tr/yarismalar/hyperloop-gelistirme-yarismasi/
  • TEKNOFEST. (2024). Geleceğin Ulaşım Teknolojisi TÜBİTAK Hyperloop Geliştirme Yarışması Sona Erdi. https://www.teknofest.org/tr/yarismalar/hyperloop-gelistirme-yarismasi/
  • Thompson, P. J. (2019). A Scientific and Economic Analysis of the Hyperloop as it Pertains to Mass Transportation. http://rave.ohiolink.edu/etdc/view?acc_num=case1560510307453676
  • Turrin, F. (2023). Cybersecurity of Modern Cyber-Physical Systems.
  • U.S. Department of Energy. (2021). Effect of Hyperloop Technologies on the Electric Grid and Transportation Energy. USDOE Office of Energy Efficiency and Renewable Energy (EERE), Washington …. https://www.osti.gov/biblio/1773025/
  • UTIKAD. (2022). Erciyas ve Çimtaş, Hyperlooptt’e Tedarikçi ve Yatırımcı Oldu. https://www.utikad.org.tr/Detay/Sektor-Haberleri/30900/erciyas-ve-cimtas-hyperlooptt-e-tedarikci-ve-yatirimci-oldu
  • TRANSPOD. (2024). TransPod system. Erişim tarihi 24 Eylül 2024, https://www.transpod.com/transpod-system/
  • TUM Hyperloop. (2023). Ultra-fast connections between mobility hubs. Erişim tarihi 25 Kasım 2024, https://tumhyperloop.com/about-hyperloop/
  • zeleros. (2024). We develop hyperloop Technologies. Erişim tarihi 24 Eylül 2024, https://zeleros.com/hyperloop/
  • Zhang, J., Liu, L., Han, B., Li, Z., Zhou, T., Wang, K., Wang, D., & Ai, B. (2020). Concepts on train-to-ground wireless communication system for hyperloop: Channel, network architecture, and resource management. Energies, 13(17), 4309.
There are 56 citations in total.

Details

Primary Language Turkish
Subjects Transport Planning, Transportation and Traffic, Transportation Engineering
Journal Section Articles
Authors

Esma Dilek 0000-0002-7994-0294

Özgür Talih 0000-0002-5899-2511

Bahadır Fatih Yıldırım 0000-0002-0475-741X

Early Pub Date March 19, 2025
Publication Date March 25, 2025
Submission Date July 6, 2024
Acceptance Date December 3, 2024
Published in Issue Year 2025 Volume: 8 Issue: 1

Cite

APA Dilek, E., Talih, Ö., & Yıldırım, B. F. (2025). Ulaştırmanın Beşinci Modu: Hyperloop Sistemi ve Siber Güvenlik. Akıllı Ulaşım Sistemleri Ve Uygulamaları Dergisi, 8(1), 1-21. https://doi.org/10.51513/jitsa.1511769