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Solving a Certain Two-Alternative Problem in the Optimal Organization of Aviation Transportation in Conditions of Uncertainty

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper proposes a solution to a certain two-alternative problem of aviation transportation optimal organization in conditions of uncertainty of the subjective preference functions. Conditional optimization of the objective functional containing the entropy of the individuals’ operational effectiveness functions preferences is carried out in the framework of the simplest variational problem. The advantages of the described optimization approach are demonstrated in the generalized terms of the operational effectiveness functions for aviation transportation organization.
Rocznik
Strony
66--74
Opis fizyczny
Bibliogr. 28 poz., wzory
Twórcy
  • National Aviation University, Faculty of Transport, Management and Logistic, Liubomyra Huzara Avenue, 1, Kyiv, 03058, Ukraine
Bibliografia
  • [1] E. Silberberg and W. Suen, The Structure of Economics. A Mathematical Analysis. New York: McGraw-Hill Higher Education, 2001.
  • [2] V. Kasianov, Subjective Entropy of Preferences. Subjective Analysis: Monograph. Warsaw, Poland: Institute of Aviation Scientific Publications, 2013.
  • [3] A. Goncharenko, “Optimal price choice through buyers’ preferences entropy,” in Proceedings of the International Conference on Advanced Computer Information Technologies (ACIT-2020), Deggendorf, Germany, pp. 537-540, September 2020.
  • [4] Jaynes , E. T., “Information theory and statistical mechanics,” Physical Review, 106(4), pp. 620-630, 1957. https://bayes.wustl.edu/etj/articles/theory.1.pdf
  • [5] Jaynes E. T., “Information theory and statistical mechanics II,” Physical Review, 108(2), pp. 171-190, 1957. https://bayes.wustl.edu/etj/articles/theory.2.pdf
  • [6] Jaynes E. T., “On the rationale of maximum-entropy methods,” Proceedings of the IEEE, 70, pp. 939-952, 1982.
  • [7] Reznik, O., Mazievich, T., Shebanits, D., Puzanova, G., and Pyrih, I., “Peculiarities of ecological taxation in Ukraine and the world,” Journal of Legal, Ethical and Regulatory Issues, 23(1), pp. 1-6, 2020.
  • [8] Říhová, Z., “Integration of information systems in mergers and acquisition of companies,” in Proceedings of the International Conference on Advanced Computer Information Technologies (ACIT-2018), Ceske Budejovice, Czech Republic, pp. 262-265, June 2018.
  • [9] Vichrova, M. K., Hájek, P., Kepka, M., Fiegler, L., Dorner, W., and Juha, M., “Peregrinus Silva Bohemica: A digital travel guide for navigation assistance,” in Proceedings of the International Conference on Advanced Computer Information Technologies (ACIT-2019), Ceske Budejovice, Czech Republic, pp. 492-495, June 2019.
  • [10] Dostálek, L. and Dostálková, I., “Omnifactor authentication,” in Proceedings of the International Conference on Advanced Computer Information Technologies (ACIT-2018), Ceske Budejovice, Czech Republic, pp. 228-231, June 2018.
  • [11] Dyvak, M., Brych, V., Spivak, I., Honchar, L., and Melnyk, N., “Discrete dynamic model of retail trade market of computer equipment in Ukraine,” in Proceedings of the International Conference on Advanced Computer Information Technologies (ACIT-2018), Ceske Budejovice, Czech Republic, pp. 50-53, June 2018.
  • [12] Goncharenko, A. V., “Multi-optional hybrid effectiveness functions optimality doctrine for maintenance purposes,” in Proceedings of the International Conference on Advanced Trends in Radioelectronics, Telecommunications and Computer Engineering (TCSET-2018), Lviv-Slavske, Ukraine, pp. 20-24, February 2018.
  • [13] Goncharenko, A. V., “Expediency of unmanned air vehicles application in the framework of subjective analysis,” in Proceedings of the IEEE 2nd International Conference on Actual Problems of Unmanned Aerial Vehicles Developments (APUAVD), IEEE, Kyiv, Ukraine, pp. 129-133, October 2013.
  • [14] Goncharenko, A. V., “Navigational alternatives, their control and subjective entropy of individual preferences,” in Proceedings of the IEEE 3rd International Conference on Methods and Systems of Navigation and Motion Control (MSNMC), IEEE, Kyiv, Ukraine, pp. 99-103, October 2014.
  • [15] Goncharenko, A. V., “Applicable aspects of alternative UAV operation,” in Proceedings of the IEEE 3rd International Conference on Actual Problems of Unmanned Aerial Vehicles Developments (APUAVD), IEEE, Kyiv, Ukraine, pp. 316-319, October 2015.
  • [16] Goncharenko, A. V., “Several models of artificial intelligence elements for aircraft control,” in Proceedings of the IEEE 4th International Conference on Methods and Systems of Navigation and Motion Control (MSNMC), IEEE, Kyiv, Ukraine, pp. 224-227, October 2016.
  • [17] Goncharenko, A. V., “Aeronautical and aerospace material and structural damages to failures: theoretical concepts,” International Journal of Aerospace Engineering, Article ID 4126085, 7 pages, 2018.
  • [18] Solomentsev, O., Zaliskyi, M., and Zuiev, O., “Estimation of quality parameters in the radio flight support operational system,” Aviation, vol. 20, no. 3, pp. 123-128, 2016.
  • [19] Patel, G. C. M., Chate, G. R., Parappagoudar, M. B., and Gupta K., “Intelligent modelling of hard materials machining,” Springer Briefs in Applied Sciences and Technology, pp. 73-102, 2020.
  • [20] Béjar, S. M., Vilches, F. J. T., Gamboa, C. B., and Hurtado, L. S., “Fatigue behavior parametric analysis of dry machined UNS A97075 aluminum alloy,” Metals, vol. 10, no. 5, 631, 2020.
  • [21] Hulek, D. and Novák, M., “Expediency analysis of unmanned aircraft systems,” in Proceedings of the 23rd International Conference on Transport Means, Palanga, Lithuania, pp. 959-962, October 2019
  • [22] Goncharenko, A. V., “Multi-optional hybridization for UAV maintenance purposes,” in Proceedings of the IEEE 5th International Conference on Actual Problems of Unmanned Aerial Vehicles Developments (APUAVD), IEEE, Kyiv, Ukraine, pp. 48-51, October 2019.
  • [23] Kasjanov, V. and Szafran, K., 2015, “Some hybrid models of subjective analysis in the theory of active systems,” Transactions of the Institute of Aviation, 3(240), pp. 27-31. doi: 10.5604/05096669.1194963.
  • [24] Pagowski Z. T. and Szafran K., 2014, “Ground effect inter-modal fast sea transport,” International Journal on Marine Navigation and Safety of Sea Transportation, 8(2), pp. 317-320. doi: 10.12716/1001.08.02.18.
  • [25] Szafran K., 2014, “Bezpieczeństwo lotu - zasada maksymalnej entropii” [Flight safety - the principle of maximum entropy] (in Polish), Bezpieczeństwo na lądzie, morzu i w powietrzu w XXI wieku, pp. 247-251, ISBN 978-83-61520-02-3.
  • [26] Szafran, K. and Kramarski, I., 2015, “Safety of navigation on the approaches to the ports of the Republic of Poland on the basis of the radar system on the aerostat platform,” International Journal on Marine Navigation and Safety of Sea Transportation, 9(1), pp. 129-134. doi: 10.12716/1001.09.01.16.
  • [27] Szafran K., 2014, “Bezpieczeństwo operatora pojazdu trakcyjnego - stanowisko prób dynamicznych” [Traction vehicle operator safety - dynamic test station], Logistyka, 6, pp. 192-197.
  • [28] Krzysztofik, I. and Koruba, Z., 2014, “Mathematical model of movement of the observation and tracking head of an unmanned aerial vehicle performing ground target search and tracking,” Journal of Applied Mathematics, Special Issue (2014). doi: 10.1155/2014/934250.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-dffcff4d-1295-4f7b-8eac-b6029cba4d14
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