Volume - 2 Issue - 2 (2025)
Volume: 2
Issue: 2
e-ISSN: 3079-6075
DOI: 10.71108/transporttech.vm02is02
- Arthur Dela Peña*, Michael Laurenz Escalante, Elisa Grampil, Mercy Guinto
- DOI: 10.71108/transporttech.vm02is02.01
- Full text: Yes | Abstract: Yes | Keywords: 6 | References: 57
Cite This Article
APA
Dela Peña, A., Escalante, M.L., Grampil, E. & Guinto, M. (2025). Feasibility and design of a multi-mode fuel delivery system for aircraft engine test cells in the Philippines. International Journal of Transportation Research and Technology, 2(2), 5-22. https://www.doi.org/10.71108/transporttech.vm02is02.01
MLA
Dela Peña, A., Escalante, M. L., Grampil, E. and Guinto, M. “Feasibility and design of a multi-mode fuel delivery system for aircraft engine test cells in the Philippines.” International Journal of Transportation Research and Technology, vol. 2, no. 2, 2025, pp.5-22. https://www.doi.org/10.71108/transporttech.vm02is02.01
Chicago
Dela Peña, A., Escalante, M. L., Grampil, E. and Guinto, M. “Feasibility and design of a multi-mode fuel delivery system for aircraft engine test cells in the Philippines.” International Journal of Transportation Research and Technology 2, no. 2 (2025): 5-22. https://www.doi.org/10.71108/transporttech.vm02is02.01
Harvard
Dela Peña, A., Escalante, M. L., Grampil, E. and Guinto, M., 2025. Feasibility and design of a multi-mode fuel delivery system for aircraft engine test cells in the Philippines. International Journal of Transportation Research and Technology, 2(2), pp.5-22. https://www.doi.org/10.71108/transporttech.vm02is02.01
Vancouver
Dela Peña A, Escalante M L, Grampil E, Guinto M. Feasibility and design of a multi-mode fuel delivery system for aircraft engine test cells in the Philippines. TransportTech [online]. 2025;2(2):5-22. Available from: https://www.doi.org/10.71108/transporttech.vm02is02.01
- Heybatulla Ahmadov, Elshen Manafov, BalaAgha Karimov, Aytaj Mustafayeva*
- DOI: 10.71108/transporttech.vm02is02.02
- Full text: Yes | Abstract: Yes | Keywords: 6 | References: 27
Cite This Article
APA
Ahmadov, H., Manafov, E., Karimov, B. & Mustafayeva, A. (2025). Application of Artificial Intelligence-Based Digital Technologies in Transport Logistics. International Journal of Transportation Research and Technology, 2(2), 23-37. https://www.doi.org/10.71108/transporttech.vm02is02.02
MLA
Ahmadov, H., Manafov, E., Karimov, B. and Mustafayeva, A. “Application of Artificial Intelligence-Based Digital Technologies in Transport Logistics.” International Journal of Transportation Research and Technology, vol. 2, no. 2, 2025, pp.23-37. https://www.doi.org/10.71108/transporttech.vm02is02.02
Chicago
Ahmadov, H., Manafov, E., Karimov, B. and Mustafayeva, A. “Application of Artificial Intelligence-Based Digital Technologies in Transport Logistics.” International Journal of Transportation Research and Technology 2, no. 2 (2025): 23-37. https://www.doi.org/10.71108/transporttech.vm02is02.02
Harvard
Ahmadov, H., Manafov, E., Karimov, B. and Mustafayeva, A., 2025. Application of Artificial Intelligence-Based Digital Technologies in Transport Logistics. International Journal of Transportation Research and Technology, 2(2). pp.23-37. https://www.doi.org/10.71108/transporttech.vm02is02.02
Vancouver
Ahmadov H, Manafov E, Karimov B, Mustafayeva A. Application of Artificial Intelligence-Based Digital Technologies in Transport Logistics. TransportTech [online]. 2025;2(2):23-37. Available from: https://www.doi.org/10.71108/transporttech.vm02is02.02
- Oleksandr Zaporozhets*, Kateryna Kazhan, Vitalii Makarenko, Vadim Tokarev, Kateryna Synylo, Andrzej Chyla
- DOI: 10.71108/transporttech.vm02is02.03
- Full text: Yes | Abstract: Yes | Keywords: 6 | References: 59
Cite This Article
APA
Zaporozhets, O., Kazhan, K., Makarenko, V., Tokarev, V., Synylo, K. & Chyla, A. (2025). Multi-Level Design Space for the Aircraft Exposure Assessment on Environment by Concerting Vehicle-Airport-Fleet Operational Scenarios. International Journal of Transportation Research and Technology, 2(2), 38-54.
https://www.doi.org/10.71108/transporttech.vm02is02.03
MLA
Zaporozhets, O., Kazhan, K., Makarenko, V., Tokarev, V., Synylo, K. and Chyla, A. “Multi-Level Design Space for the Aircraft Exposure Assessment on Environment by Concerting Vehicle-Airport-Fleet Operational Scenarios.” International Journal of Transportation Research and Technology, vol. 2, no. 2, 2025, pp.38-54. https://www.doi.org/10.71108/transporttech.vm02is02.03
Chicago
Zaporozhets, O., Kazhan, K., Makarenko, V., Tokarev, V., Synylo, K. and Chyla, A. “Multi-Level Design Space for the Aircraft Exposure Assessment on Environment by Concerting Vehicle-Airport-Fleet Operational Scenarios.” International Journal of Transportation Research and Technology 2, no. 2 (2025): 38-54. https://www.doi.org/10.71108/transporttech.vm02is02.03
Harvard
Zaporozhets, O., Kazhan, K., Makarenko, V., Tokarev, V., Synylo, K. and Chyla, A., 2025. Multi-Level Design Space for the Aircraft Exposure Assessment on Environment by Concerting Vehicle-Airport-Fleet Operational Scenarios. International Journal of Transportation Research and Technology, 2(2). pp.38-54. https://www.doi.org/10.71108/transporttech.vm02is02.03
Vancouver
Zaporozhets O, Kazhan K, Makarenko V, Tokarev V, Synylo K, Chyla A. Multi-Level Design Space for the Aircraft Exposure Assessment on Environment by Concerting Vehicle-Airport-Fleet Operational Scenarios. TransportTech [online]. 2025;2(2):38-54. Available from: https://www.doi.org/10.71108/transporttech.vm02is02.03
- Dinh-Dung Nguyen*, Ngoc-Tuan Vu, Danh-Dong Tran, Manh-Hung Duong
- DOI: 10.71108/transporttech.vm02is02.04
- Full text: Yes | Abstract: Yes | Keywords: 6 | References: 59
Cite This Article
APA
Nguyen, D.-D., Vu, N.-T., Tran, D.-D. & Duong, M.-H. (2025). Comparative Evaluation of PID and Fuzzy Electronic Stability Control via Differential Braking in a Double Lane Change Maneuver. International Journal of Transportation Research and Technology, 2(2), 55-65. https://www.doi.org/10.71108/transporttech.vm02is02.04
MLA
Nguyen, D.-D., Vu, N.-T., Tran, D.-D. and Duong, M.-H. “Comparative Evaluation of PID and Fuzzy Electronic Stability Control via Differential Braking in a Double Lane Change Maneuver.” International Journal of Transportation Research and Technology, vol. 2, no. 2, 2025, pp.55-65. https://www.doi.org/10.71108/transporttech.vm02is02.04
Chicago
Nguyen, D.-D., Vu, N.-T., Tran, D.-D. and Duong, M.-H. “Comparative Evaluation of PID and Fuzzy Electronic Stability Control via Differential Braking in a Double Lane Change Maneuver.” International Journal of Transportation Research and Technology 2, no. 2 (2025): 55-65. https://www.doi.org/10.71108/transporttech.vm02is02.04
Harvard
Nguyen, D.-D., Vu, N.-T., Tran, D.-D. and Duong, M.-H., 2025. Comparative Evaluation of PID and Fuzzy Electronic Stability Control via Differential Braking in a Double Lane Change Maneuver. International Journal of Transportation Research and Technology, 2(2), pp.55-65. https://www.doi.org/10.71108/transporttech.vm02is02.04
Vancouver
Nguyen D-D, Vu N-T, Tran D-D, Duong M-H. Comparative Evaluation of PID and Fuzzy Electronic Stability Control via Differential Braking in a Double Lane Change Maneuver. TransportTech [online]. 2025;2(2):55-65. Available from: https://www.doi.org/10.71108/transporttech.vm02is02.04
- Cemal Ardil*
- DOI: 10.71108/transporttech.vm02is02.05
- Full text: Yes | Abstract: Yes | Keywords: 8 | References: 35
Cite This Article
APA
Ardil, C. (2025). Indeterminacy Fuzzy TOPSIS Framework for Unmanned Stealth Aircraft Selection. International Journal of Transportation Research and Technology, 2(2), 66-87. https://www.doi.org/10.71108/transporttech.vm02is02.05
MLA
Ardil, C. “Indeterminacy Fuzzy TOPSIS Framework for Unmanned Stealth Aircraft Selection.” International Journal of Transportation Research and Technology, vol. 2, no. 2, 2025, pp.66-87. https://www.doi.org/10.71108/transporttech.vm02is02.05
Chicago
Ardil, C. “Indeterminacy Fuzzy TOPSIS Framework for Unmanned Stealth Aircraft Selection.” International Journal of Transportation Research and Technology 2, no. 2 (2025): 66-87. https://www.doi.org/10.71108/transporttech.vm02is02.05
Harvard
Ardil, C., 2025. Indeterminacy Fuzzy TOPSIS Framework for Unmanned Stealth Aircraft Selection. International Journal of Transportation Research and Technology, 2(2), pp.66-87. https://www.doi.org/10.71108/transporttech.vm02is02.05
Vancouver
Ardil C. Indeterminacy Fuzzy TOPSIS Framework for Unmanned Stealth Aircraft Selection. TransportTech [online]. 2025;2(2):66-87. Available from: https://www.doi.org/10.71108/transporttech.vm02is02.05
