Theoretical Bases of the Intellectual System Optimized Design Method the Subsea Operation Vessels
DOI:
https://doi.org/10.52171/herald.446Keywords:
subsea operation vessels, ship design, artificial intellect, system analysis, mathematic models, many criterial optimizationsAbstract
In article, the vessel was considered as the complex multilevel system which is complex structure where each element and a subsystem play the role. Are created the basis for continuation of the further solution of a problem of multi-criteria optimization of design of the vessel. Solving a problem of optimization of design of vessels with application of a method of multi-criteria optimization, it is created understanding of a role of each private optimality criterion that gives the chance to estimate extent of its influence on indicators of functional efficiency and design characteristics of the designed vessel. For the solution of a task machine learning and neural network modeling and formation of the concept of an intellectual design method of vessels, the structural model of perspective researches is developed and gives a basic algorithm of the sequence of the solution of problems of neural network modeling and researches of intellectual model at design of the vessel. At the same time, it is provided for the solution of a task, the system analysis a methodological basis of a research of the designed vessel as a system, at the same time mathematical modeling provides tools for formalization and the analysis of this system. Forming the concept of an intellectual design method, considering that a main goal of formation of model of digitalization of the vessel, creation of the digital double of the designed vessel on the basis of information means is. The structural model of digitalization of the vessel with use of artificial intelligence is offered and the key element, the "block of artificial intelligence" which is the purpose of further researches is shown.
References
1. Sannikov A.A. Sistemniy analiz pri prinyatii resheniy / A.A. Sannikov, N.V. Kutsubina – Ekaterinburg: Ural. Gos. Lesotexn. Un-t, - 2015. – 137p.
2. Semyonov S.S. Osnovniye polojeniya sistemnogo analiza pri otsenke technicheskogo urovnya slojnikh system s primeneniyem ekspertnogo mneniya / S.S. Semyonov // Nadyejnost i kachestvo slojnikh sistem. 2013. №4, p.45 – 53.
3. Gaibova T.V. Sistemniy analiz d technike i technologiyakh / Gaibova T.V. – Orenburg: Orenburgskiy gos. Un-t, - 2016.-221p.
4. Kitayev M.V., Primeneniye metodov mnogokriterialnoy optimizasii dlya resheniya zadachi proyektirovaniya sudna / M.V. Kitayev, I.A. Novoseltsev // Nauchniye problem vodnogo transporta. 2023. №75(2), p.66-74.
5. Anisimov V.V. Mnogokriterialnaya optimizasiya v proyektirovanii sudov / V.V. Anisimov, E.P. Ronnov // Kongress mejdunarodnogo foruma “Velikiye reki”. 2014. p.273-276.
6. Kitayev M.V., Resheniye zadachi optimizasii kharakteristik sudna metodom posledovatelnikh ustupok / M.V. Kitayev, I.A. Novoseltsev, V.A. Staroverova // Vestnik Injenernoy Shkoli DVFU. 2023. №1(54), p.50-57.
7. Bugachev V.G., Optimizasiya kharakteristik i elementov ribolovnikh sudov c uchotom sluchaynikh faktorov ikh funksionirovaniya / V.G. Bugayev, Dam Van Tung, U.V. Bondarenko // Vestnik injinernoy shkoli DVFU. 2021. №1(46), p.24-35.
8. Borgoyakova T.G., Sistemniy analiz i matematicheskoye modelirovaniye / T.G. Borgoyakova, E.V. Lozitskaye // Injenerniy vestnik Dona. 2018. №1, 8p.
9. Soldatenko L.V. Vvedeniye v matematicheskoye modelirovaniye stroitelno-tekhnologicheskikh zadach / L.V. Soldatenko – Orenburg: GOU OGU, - 2009. – 161p.
10. Demyanov D.N., Osnovi matematicheskogo modelirovaniya / D.N. Demyanov – Naberejniye Chelni: Kazan. Federal. Un-t., 2016. – 50p.
11. Ryajskikh V.I. Matematicheskoye modelirovaniye / V.I. Ryajskikh, A.V. Ryajskikh, E.A. Soboleva – Voronej: FGBOU VO VGTU, - 2024. – 60p.
12. Lobanova V.A. Printsip organizatsii SAPR s elementami iskustvennogo intellekta / V.A. Lobanova, O.A. Voronina – Orel: OGU, - 2021. – 169p.
13. Vasilyev D.N. Intellektualniye informatsionniye sisteni / D.N. Vasilyev, V.G.Chernov – Vladimir: Vladimirskiy Gos. Un-t., - 2008. – 120p.
14. Ostroukh A.V., Intellektualniye sisteni / A.V. Ostroukh, - Krasnoyarsk: Nauchno-innovasionniy sentr, - 2020. – 316p.
15. Basalin P.D., Sredstva intellektualnoy podderjki prosessa proyektirovaniya slojnikh technicheskirh obyektov / P.D. Basalin, S.E. Vlasov // Matematicheskoye modelirovaniye i optimalnoye upravleniye. Vestnik Nijegorodskogo Universiteta im. N.I. Lobachevskogo. 2007. №1, p.177-182.
16. Chmir I.A., Printsipi organizatsii intellektualnoy SAPR na osnove dialogovoy bazi znaniy / I.A. Chmir // Matematicheskiye mashini I sistemi. 2014. №3, p.29-38.
17. Golenkov V.V., Otkritiy proyekt, napravlenniy na sozdaniye technologii komponentnogo proyektirovaniya intellektualnikh sistem / V.V. Golenkov, N.A. Gulyakina // OSTIS-2013. – 2013. p.1-24.
18. Bashirov R.J., The System Analysis and Mathematical Model of the Subsea Construction Vessels / R.J. Bashirov, O.M. Abdullayev // Hearld of the Azerbaijan Engineering Academy. 2025. №17(2), p.73-82
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