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http://dx.doi.org/10.22937/IJCSNS.2022.22.9.27

Development of Computer-based Remote Technologies and Course Control Systems for Autonomous Surface Ships  

Melnyk, Oleksiy (Navigation and Maritime Safety Department, Odesa National Maritime University)
Volianska, Yana (Electrical Engineering of Ship and Robotized Complexes Department, Admiral Makarov National University of Shipbuilding)
Onishchenko, Oleg (Fleet Technical Operation Department, National University "Odesa Maritime Academy")
Onyshchenko, Svitlana (Fleet Operation and Shipping Technology Department, Odesa National Maritime University)
Kononova, Olha (Mechanical Engineering Department, Odesa National Maritime University)
Vasalatii, Nadiia (Navigation and Ship Control Department, Odesa National Maritime University)
Publication Information
International Journal of Computer Science & Network Security / v.22, no.9, 2022 , pp. 183-188 More about this Journal
Abstract
Recently, more and more researches aimed at the development of automated and autonomous ships are appearing in the scientific environment. One of the main reason is the need to solve the problems of safe navigation and reducing accidents due to human factor, as well as the ever-increasing problem associated with the lack of qualified maritime personnel. Development of technologies based on application of artificial intelligence also plays important role, after all for realization of autonomous navigation concept and enhancement of ship automatic maneuvering processes, advancement of maneuvering functions and elaboration of specific algorithms on prevention of close quarter situations and dangerous approach of ships will be required. The purpose of this work is the review of preconditions of occurrence of the autonomous ship navigation conception, overview of introduction stages and prospects for ship remote control based on unmanned technologies, analysis of technical and intellectual decisions of autonomous surface ships, main research tendencies. The research revealed that the technology of autonomous ship navigation requires further development and improvement, especially in terms of the data transmission protocols upgrading, sensors of navigation information and automatic control systems modernization, which allows to perform monitoring of equipment with the aim of improving the functions of control over the autonomous surface ship operation.
Keywords
Autonomous ship; remote control technologies; ship navigation; course steadiness;
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Times Cited By KSCI : 2  (Citation Analysis)
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1 Nakarith, N., Iamraksa, P.: The study of using infrared as docking aid system for boat, In: Proceedings of the ACDT 2015, The 1st Asian Conference on Defense Technology.
2 Bremnes, J., Norgren-Aamot, P., Sorensen, A., Thieme, C., Utne, I.: Intelligent Risk-Based Under-Ice Altitude Control for Autonomous Underwater Vehicles. 1-8 (2019) 10.23919/OCEANS40490.2019.8962532.   DOI
3 Yudin, Yu., Gololobov, A., Stepakhno, A: Method of Parameter Calculation of Mathematical Model of Vessel, MGTU Bulletin, 12, 5-9 (2009)
4 Kurt, I., Aymelek, M.: Operational and economic advantages of autonomous ships and their perceived impacts on port operations, Maritime Economics & Logistics, 24 (2022)
5 Shimizu, E.: Recent Trends and Issues for Practical Application of MASS. Class NK Technical Journal, 3 (2021)
6 Perera, L.P.: Deep Learning Toward Autonomous Ship Navigation and Possible COLREGs Failures, Journal of Offshore Mechanics and Arctic Engineering, 143, 3, (2020)
7 Kim, T.E., Mallam, S.: A Delphi-AHP study on STCW leadership competence in the age of autonomous maritime operations, WMU Journal of Maritime Affairs, 19, 163-181 (2020)   DOI
8 Burmaka, I., Vorokhobin I., Melnyk, O., Burmaka, O., Sagin, S.: Method of Prompt Evasive Maneuver Selection to alter Ship's Course or Speed, Transactions on Maritime Science, 11(1), (2022) https://doi.org/:10.7225/toms.v11.n01.w01.   DOI
9 Melnyk, O., Bychkovsky, Yu., Shumylo, O., Onyshchenko, S., Onishchenko, O., Voloshyn, A., Cheredarchuk, N. Study of the risk assessment quality dependence on the ships accidents analysis. Scientific Bulletin of Naval Academy, Vol. XXV, 136-146 (2022) https://doi.org/:10.21279/1454-864X-22-I1-015   DOI
10 Budashko, V., Obniavko, T., Onishchenko, O., Dovidenko, Y., Ungarov, D. Main Problems of Creating Energy-efficient Positioning Systems for Multipurpose Sea Vessels. IEEE 6th International Conference on Methods and Systems of Navigation and Motion Control, MSNMC 2020 - Proceedings, 106-109, 9255514
11 Alsos, O., Hodne, P., Skaden, O., Porathe, T.: Maritime Autonomous Surface Ships: Automation Transparency for Nearby Vessels. Journal of Physics: Conference Series. 2311. 012027 (2022) 10.1088/1742-6596/2311/1/012027.   DOI
12 Review of maritime transport - 2021, United Nations Organization. Available at: https://unctad.org/system/files/officialdocument/rmt2021summary_ru.pdf
13 Rokseth, B., Haugen, O., Utne, I.: Safety Verification for Autonomous Ships. MATEC Web of Conferences. 273. 02002. 10.1051/matecconf/201927302002 (2019)   DOI
14 Yang, R., Utne, I.: Towards an online risk model for autonomous marine systems (AMS). Ocean Engineering. 251. 111100. 10.1016/j.oceaneng.2022.111100 (2020)   DOI
15 Onishchenko, O., Golikov, V., Melnyk, O., Onyshchenko, S., Obertiur, K. Technical and operational measures to reduce greenhouse gas emissions and improve the environmental and energy efficiency of ships. Scientific Journal of Silesian University of Technology. Series Transport, 116, 223-235 (2022) https://doi.org/10.20858/sjsutst.2022.116.14.   DOI
16 Melnyk, O., Onyshchenko S., Pavlova N., Kravchenko O., Borovyk S.: Integrated Ship Cybersecurity Management as a Part of Maritime Safety and Security System. International Journal of Computer Science and Network Security, vol.22 (03), 135-140 (2022) https://doi.org/10.22937/IJCSNS.2022.22.3.18.   DOI
17 Melnyk, O., Bychkovsky, Y., Voloshyn, A.: Maritime situational awareness as a key measure for safe ship operation. Scientific Journal of Silesian University of Technology. Series Transport. 114, 91-101 (2022) https://doi.org/10.20858/sjsutst.2022.114.8   DOI
18 Filimonov, V.: Autonomous ships and the difficulties of their operation. Baltic Lloyd (2020)
19 Chong, J.C.: Impact of maritime autonomous surface ships (MASS) on VTS operations, World Maritime University Dissertations, Malmo, Sweden (2018)
20 Pietrzykowski, Z., Hajduk, J.: Operations of Maritime Autonomous Surface Ships. TransNav, the International Journal on Marine Navigation and Safety of Sea Transportation, 13, pp. 725-733 (2019)   DOI
21 Kim, T.E., Perera, L.P., Sollid, M.P., Batalden, B.M., Sydnes, A.: Safety challenges related to autonomous ships in mixed navigational environments, WMU Journal of Maritime Affairs (2022)