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Economic-mathematical substantiation of optimizing the use of technical means, to perform tasks in conditions of uncertainty

https://doi.org/10.20914/2310-1202-2017-3-232-237

Abstract

In this article a variant of the economic-mathematical substantiation of optimization approaches choice of tools for the survey of airfields, the mechanism of the use of multiple statistical criteria for optimality and usefulness of the decisions taken in this matter, when operating in conditions of uncertainty. Lately in the modern world in many socio-economic areas of human life quite often there are thematic challenges of managerial decision-making in a conflict environment and competition, when several in the General case, reasonable working actors perform collective decision-making, and the benefits of each depends not only on the chosen business strategies, but also from management decisions of other partners and the success of the experiments. Therefore, it is necessary to develop and substantiation of optimum variants of decision of choice of forces and means to perform tasks in conditions of uncertainty, that is also acceptable for military units. The actual problem currently is to optimize system control engineering-airfield security, the components of which perform their tasks under conditions of uncertainty. Analysis of opportunities of technical means (unmanned aerial vehicles) shows that under the condition of equipping them with the appropriate equipment can be considered about the possibility of their use as part of a complex of technical means for inspection of airfields after the who enemy action in the runway. Therefore, the scientific goal in this article is to examine the possibilities of using technical means for inspection of airfield engineering and airfield services, and the aim of the study is using mathematical methods to justify the choice of the most effective means, from the point of view of economic cost of its introduction and use when performing tasks in conditions of uncertainty.

About the Authors

I. V. Kuksova
Voronezh state university of engineering technologies
Russian Federation


V. I. Meshcheryakov
Military training and research center air force “The air force academy named after the professor N.E. Zhukovsky and Yu.A. Gagarin”,


References

1. 1 Vlatskaya I.V., Nesterenko M. Yu., Polezhaev P.N. Razrabotka sistemy podderzhki prinyatiya reshenii [The development of the system of support of decision-making under uncertainty on the basis of gaming simulation]. (in Russian)

2. 2 Review of systems unmanned flying models on the Russian and foreign markets. FKU NITs “Okhrana” [PKU SIC "Protection": the information review] 2011. (in Russian).

3. 3 Ivanov P.I. Osnovy I primenenie metodov prikladnoi matematiki [Fundamentals and application of methods of applied mathematics in military Affairs: textbook] Monino.: VVA im. Yuri Gagarin, 1991. 512 p. (in Russian)

4. 4 Meshcheryakov V.I., Vlasov A.B., Perunov A.G., Salov S.V. Substantiation of the optimal variant of decision-making at management Institute of forces and means operating in uncertain conditions. Sovremennye problem nauki [Modern problems of science and education: the network journal]. 2015. Available at: www. Science-education.ru / 122–21022 (date accessed: 01.07.2017).

5. 5 Raizberg B.A. Sovremennyi ekonomicheskii slovar’ [Modern economic dictionary] Moscow, INFRA-M, 2010. 58 p. (in Russian)

6. 6 Chernoskutov A.I., Trishkin V. S. Estimation of quality of complex systems and means in the establishment of a weapons and military technology . Voennaya mysl’ [Military thought] 2016. no. 6. pp. 17–23. (in Russian)

7. 7 Balashova E.A., Bityukova V.V., Kotov G.I., Budanov A.V. Mathematical modeling of the decision-making process on the state of stochastic systems.Vestnik VGUIT [Proceedings of the VSUET]. 2016. no. 2. pp. 118-124. (in Russian) DOI:10.20914/2310-1202-2016-2-118-124

8. 8 Vikulov S.F. Voenno-ekonomicheskii analiz [Military-economic analysis: textbook; edited by S.F. Vikulova] Moscow, Military Publishing, 2000. 214. (in Russian)

9. 9 Kuksova I.V. evaluation Criteria effectively-for innovative activities of enterprises. Glibalizatsiya nauki [Globalization of science: problems and prospects: collection of articles of international scientific-practical conference] 2015. pp. 59–61 (in Russian)

10. 10 Mystrov L.E., Derkanosova A.A. Methods of Information Impact in the Synthesis of Strategies for Managing Competitive Stability of Social and Economic Organizations. Vestnik VGUIT [Proceedings of VSUET]. 2013. no. 4 (58). pp. 282-288. (in Russian)

11. 11 . Wenkel, K.O., Berg, M., Mirschel, W., et al., An inter active decision support system for climate change impact assessment and the analysis of potential agricul tural land use adaptation strategies, J. Environ. Man age., 2013, vol. 127, pp. 168–183.

12. 12 . Cawsey T, Deszca G, Ingols C. Organizational Change: An Action-Oriented Toolkit. Thousand Oaks, Calif.: SAGE Publications. 2015 pp. 18–23.

13. 13 Boje D. Organizational Change and Global Standardization: Solutions to Standards and Norms Overwhelming Organizations. Routledge Studies in Organizational Change and Development. Routledge. 2015. pp. 148–153.

14. 14 Parry W. Big Change, Best Path: Successfully Managing Organizational Change with Wisdom, Analytics and Insight. Kogan Page. 2015. pp. 42–52.

15.


Review

For citations:


Kuksova I.V., Meshcheryakov V.I. Economic-mathematical substantiation of optimizing the use of technical means, to perform tasks in conditions of uncertainty. Proceedings of the Voronezh State University of Engineering Technologies. 2017;79(3):232-237. (In Russ.) https://doi.org/10.20914/2310-1202-2017-3-232-237

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ISSN 2226-910X (Print)
ISSN 2310-1202 (Online)