APPLICATION OF THE SYSTEM ANALYSIS OF IMPLEMENTATION OF THE INSTRUMENTAL METHOD OF NAVIGATION ON INLAND WATERWAYS OF UKRAINE

Authors

  • V. V. Panin State University of Infrastructure and Technologies, Kyiv, Ukraine, Ukraine
  • V. V. Doronin State University of Infrastructure and Technologies, Kyiv, Ukraine, Ukraine
  • V. M. Aleynikov State University of Infrastructure and Technologies, Kyiv, Ukraine, Ukraine

DOI:

https://doi.org/10.15588/1607-3274-2018-2-14

Keywords:

safety of navigation, electronic chart system, instrumental navigation method, algorithm, multiparametric optimization, graph, linguistic analysis, modeling.

Abstract

Context. The task of applying the scientific approach to the introduction of a modern navigation system on inland waterways of
Ukraine is considered to solve, first of all, weakly structured problems characterized by the presence of an uncertainty factor and containing
both formalized and unformulated elements that are not translated into the language of mathematics.
Objective – development of the methodology of system analysis at the stage of introduction of the instrumental method of navigation
on inland waterways of Ukraine, which guarantees high quality of modeling in accordance with the exact criteria of navigation and economy.
Method. An approach to data processing is proposed, which is based on the study of the properties of the system with her further
formalization. A model of the layout of the system based on electronic chart systems is developed, characterizing the fulfillment of the
assigned tasks with an increased probability of safe navigation. The features of the state of the system using a mathematical model in the
form of an undirected graph are considered. An algorithm for realizing the functional stability of the system is proposed. The results of the
experiments make it possible to recommend the proposed method for introducing the instrumental method of navigation on inland
waterways of Ukraine.
Results. The parameters of experimental research of the functioning of the stages of the functional stability of the coastal infrastructure
and ship navigation equipment have been developed.
Conclusions. In the process of research a set of procedures that contain elements of scientific novelty are used and are aimed at
formulating a problem situation, proposing a set of alternatives that are compared with performance criteria using the system stability
factors.

References

Vahushchenko L. L. Modern Information Technologies in

Navigation: Textbook. Odessa, ОNМА, 2013, P. 135.

Mashkov O. A., Kosenko V. R. Development of the theory of

functional stability as a stability of the functional quality of a

complex system, Intelligent decision making and intelligent

computing problems: International Scientific Conference

ISDMCI’2016, Kherson, May 24–28, 2016: Conference

materials. Kherson, Publishing house PE Vyshemyrskyi V.S., 2016, P. 93–104.

Barabash O. V., Kravchenko Yu. V. Functional stability – the

property of complex technical systems, Collection of scientific

works of NAOU, 2002, Bull. No. 40, P. 225–229.

Vagushchenko L. L. Ship navigation and information systems, Textbook. Odessa, NAOU, 2004, P. 302.

Haharski D. A. Electronic cartographic systems in modern

navigation : Textbook. St. Petersburg, HMA named after Admiral Makarov, 2007, P. 61.

Anokhin P. K. Selected Works: Philosophical Aspects of Systems Theory : Monograph. Moscow, Science, 1978, P. 190.

Bertalanfi L. Von. General theory of systems: a critical review: monograph. Moscow, “Progress”, 1969, P. 82.

Doronin V. V. Systemic technology of the solution of operational tasks of navigation for the synthesis of the laws of operation of water transport. Kharkiv, Systems of information processing, 2015, No. 10 (135), P. 186–191.

Bronstein I. N., Semendiaiev K. A. Reference book on math: a collective monograph. Moscow, “Science”, 1980, P. 974.

Panin V. V., Baranov G. L., Nosovskyi A. M., Tykhonov I. V.

Vasko S. M. Structural modeling and symbolic transformations

for controlling the motion of vehicles: a collective monograph.

Kyiv, MES of Ukraine, 2014, P. 310.

Doronin V. V., Aleinikov M. V, Aleinikov V. M. Application of

Evaluation Criteria for Functional Sustainability in Ukraine Inland Waterways, Intellectual Systems for Decision Making and Problems of Computational Intelligence: XIII International Scientific Conference (ISDMCI’2017), Kherson, PP Vyshemyrskyi V. S., 2017, P. 179–180.

Volkova V. N., Denysov A. A. System analysis and its application in the automated control system: a collective monograph. Leningrad, LPI, 1983, P. 83.

Symonenko S. V., Holodov M. F.– Navigation equipment:

production and practical textbook. Kyiv, GA “Derzhhidrographia”, 2014, P. 264.

How to Cite

Panin, V. V., Doronin, V. V., & Aleynikov, V. M. (2018). APPLICATION OF THE SYSTEM ANALYSIS OF IMPLEMENTATION OF THE INSTRUMENTAL METHOD OF NAVIGATION ON INLAND WATERWAYS OF UKRAINE. Radio Electronics, Computer Science, Control, (2). https://doi.org/10.15588/1607-3274-2018-2-14

Issue

Section

Progressive information technologies