| [1] |
Aaronson LS, Teel CS, Cassmeyer V, Neuberger GB, Pallikkathayil L, et al. 1999. Defining and measuring fatigue. |
| [2] |
Walker M. 2018. Why we sleep: The new science of sleep and dreams. London: Penguin Random House |
| [3] |
Smith A. 2007. Adequate crewing and seafarers' fatigue: the international perspective. Project Report. Centre for Occupational and Health Psychology, Cardiff University, UK |
| [4] |
Smith A, Allen P, Wadsworth E. 2006. Seafarer fatigue: The Cardiff research programme. MCA Research Report 464. Centre for Occupational and Health Psychology, Cardiff University, UK |
| [5] |
van Leeuwen WMA, Pekcan C, Barnett M, Williams M, Kecklund G. 2017. Modelling watch keeper sleep and fatigue in the maritime industry. |
| [6] |
European Maritime Safety Agency. 2022. Safety analysis of EMCIP data—navigation accidents. Summary report V1.0. EMSA, Lisbon, Portugal |
| [7] |
Rajapakse A, Emad GR. 2023. Fatigue, an unsolved puzzle that continues contributing to accidents at sea. |
| [8] |
Bokhonkova Y, Serbin I, Zavatska N, Danko D. 2025. Attributional style as a defense mechanism of student activists' behavior. |
| [9] |
Limasheva L, Kariyev A, Berdibayeva S, Dautkaliyeva P. 2025. Chronic stress and resilience of students in conditions of excessive mobile phone usage. |
| [10] |
Raievska Y, Kulbida S, Lavlinskyy R, Senytsia N. 2025. Psycho-emotional stability of the individual in the period of societal transformations. |
| [11] |
Halian I, Halian O, Myshchyshyn M. 2024. Coping strategies in the behavioral models of youth in martial law conditions. |
| [12] |
Rolfe JM, Lindsay SJ. 1973. Flight deck environment and pilot workload: biological measures of workload. |
| [13] |
van Leeuwen WMA, Pekcan C, Barnett M, Kecklund G. 2021. Mathematical modelling of sleep and sleepiness under various watch keeping schedules in the maritime industry. |
| [14] |
Karim E, Pavel HR, Nikanfar S, Hebri A, Roy A, et al. 2024. Examining the landscape of cognitive fatigue detection: a comprehensive survey. |
| [15] |
Lim Y, Gardi A, Sabatini R, Ramasamy S, Kistan T, et al. 2018. Avionics human-machine interfaces and interactions for manned and unmanned aircraft. |
| [16] |
Melnyk O, Malaksiano M. 2020. Effectiveness assessment of non-specialized vessel acquisition and operation projects, considering their suitability for oversized cargo transportation. |
| [17] |
LaGoy AD, Kubala AG, Seech TR, Jameson JT, Markwald RR, et al. 2024. Steps toward developing a comprehensive fatigue monitoring and mitigation solution: perspectives from a cohort of United States Naval Surface Force officers. |
| [18] |
Lang X, Wu D, Tian W, Zhang C, Ringsberg JW, et al. 2023. Fatigue assessment comparison between a ship motion-based data-driven model and a direct fatigue calculation method. |
| [19] |
Kobets V, Popovych I, Zinchenko S, Nosov P, Tovstokoryi O, et al. 2023. Control of the pivot point position of a conventional single-screw vessel. ICST-2023: Information Control Systems & Technologies, Odesa, Ukraine, 2023. CEUR-WS. org, Odesa, Ukraine pp. 130−140 doi: 10.55056/ceur-ws.org/vol-3513/paper11.pdf |
| [20] |
Ponomaryova V, Nosov P, Ben A, Popovych I, Prokopchuk Y, et al. 2024. Devising an approach for the automated restoration of shipmaster's navigational qualification parameters under risk conditions. |
| [21] |
Nosov P, Zinchenko S, Ben A, Prokopchuk Y, Mamenko P, et al. 2021. Navigation safety control system development through Navigator action prediction by data mining means. |
| [22] |
Zinchenko S, Kyrychenko K, Grosheva O, Nosov P, Popovych I, et al. 2023. Automatic reset of kinetic energy in case of inevitable collision of ships. 2023 13th International Conference on Advanced Computer Information Technologies (ACIT), Wrocław, Poland, 2023. USA: IEEE. pp. 496−500 doi: 10.1109/ACIT58437.2023.10275545 |
| [23] |
Melnyk O, Kuznichenko S, Onishchenko O. 2024. Impact of AIS manipulation on shipping safety and strategic countermeasures. |
| [24] |
Li H, Jiao H, Chen ZS, Lam JSL, Yang Z. 2026. COVID crisis-aware maritime risk assessment: a Bayesian network analysis. |
| [25] |
Melnyk OM, Onishchenko OA, Shyshkin OV, Volkov OM, Volyanskyy SM, et al. 2024. Enhancing shipboard technical facility performance through the utilization of low-sulfur marine fuel grades. |
| [26] |
De Rosario H, Solaz JS, Rodrı́guez N, Bergasa LM. 2010. Controlled inducement and measurement of drowsiness in a driving simulator. |
| [27] |
Getzmann S, Arnau S, Karthaus M, Reiser JE, Wascher E. 2018. Age-related differences in pro-active driving behavior revealed by EEG measures. |
| [28] |
Ren B, Guan W, Zhou Q, Wang Z. 2023. EEG-based driver fatigue monitoring within a human-ship-environment system: implications for ship braking safety. |
| [29] |
Ye Y, Zhou X, Wang W, Yang C, Zou Q. 2023. Research on facial fatigue detection of drivers with multi-feature fusion. |
| [30] |
Yang Z. 2024. Fatigue driving detection technology based on EEG signal. |
| [31] |
Yamaoka K, Ishii Y, Terasawa Y. 2025. Moderating effects of individual factors on the relationship between inflammation and psychophysiological states in healthy adults. |
| [32] |
Lyu H, Yue J, Zhang W, Cheng T, Yin Y, et al. 2023. Fatigue detection for ship OOWs based on input data features, from the perspective of comparison with vehicle drivers: a review. |
| [33] |
Jiang Y, Hernandez V, Venture G, Kulić D, K Chen B. 2021. A data-driven approach to predict fatigue in exercise based on motion data from wearable sensors or force plate. |
| [34] |
Gulhane M, S MP. 2014. Intelligent fatigue detection and automatic vehicle control system. |
| [35] |
Guan H, Xu Y, Li L, Deng J, Ma W, et al. 2025. A novel attention mechanism-based multi-branch long short-term memory network model for mental workload recognition of crew in tunnel navigation. |
| [36] |
Leong WY, University II. 2025. AI-driven predictive safety analytics for accident prevention in smart manufacturing. In Creating Smart and Safe Manufacturing Environments: The role of innovation and safety management. United Kingdom: The Institution of Engineering and Technology. pp. 257−268 doi: 10.1049/PBME028E_ch14 |
| [37] |
Gomathy S, Subha M, Francis J, Tan RSE. 2025. Personality enhancement for maritime learners. Journal of Maritime Research 22:330−334 |
| [38] |
Khan MM, Das, S, Karim MM. 2025. Numerical investigation of validation and verification for the resistance of JBC hull. Journal of Maritime Research 22:80−86 |
| [39] |
Kalamazh R, Voloshyna-Narozhna V, Tymoshchuk Y, Balashov E. 2024. Coping styles and self-regulation abilities as predictors of anxiety. |
| [40] |
Weiss J. 2011. Ekman, P. (2009) Telling Lies : Clues to Deceit in the Marketplace, Politics, and Marriage. New York: Norton. |
| [41] |
Mintser OP, Koshova SP. 2017. Information technologies for assessing the stress impact on the results of test control of doctors knowledge. Analytical review. The first message. |
| [42] |
Weisser M. 2016. DART – The dialogue annotation and research tool. |
| [43] |
Storchak V. 2018. Principles of construction of automated control system operator training perspective simulator systems. |
| [44] |
Tverytnykova E, Demidova Y, Drozdova T. 2021. Management system of occupational safety at Ukrainian enterprises: international and European dimension. |
| [45] |
Vapniarchuk V, Hryniuk V, Drozdov O, Bespalko I, Strashok A. 2023. Witness privileges as the foundation of their immunity in criminal proceedings. Pakistan Journal of Criminology 15:355−372 |
| [46] |
Tuliakov V, Stepanenko O. 2025. Jurisdictional tensions: divergent judicial approaches to conflicts between UNCLOS and national public law policies. |
| [47] |
Minchenko D, Stets O. 2025. Rights of seafarers and shore personnel: emerging trends and ongoing challenges. |
| [48] |
Konoplev A, Kononova O, Cheredarchuk N, Halevskyi V. 2023. Analysis of the accuracy of determination of the endurance limit by the method of gradual load change. |
| [49] |
Korczewski Z, Varbanets R, Minchev D, Rudnicki J. 2025. Multi-symptom diagnostic investigation of the working process of a marine diesel engine: case study: part 2 simulation diagnostics. |
| [50] |
Korkmaz H, Kaymak M, Ozcelik S, Fidanoglu A. 2026. Machine learning-based classification of maritime accident severity: a comparative approach. |
| [51] |
Ullah I, Pinheiro C, Ayaz MA, Brito B, Yuan Q. 2026. Beyond aggregation: a multi-scale, interpretable machine learning assessment of built environment effects on heavy-truck crash severity in Fortaleza, Brazil. |
| [52] |
Dai R, Li Y. 2026. Double deep network-based traffic signal optimization method for isolated intersections. |
| [53] |
Cernisevs O, Popova Y. 2023. ICO as crypto-assets manufacturing within a smart city. |
| [54] |
Popova Y, Cernisevs O. 2023. Smart city: sharing of financial services. |