TECHNICAL MECHANICS
ISSN (Print): 1561-9184, ISSN (Online): 2616-6380

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UDC 621.002.56

Technical mechanics, 2017, 2, 41 - 50

NEW METHOD OF ENGINEERING EVALUATION OF SPACECRAFT FOR EARTH REMOTE SENSING

DOI: https://doi.org/10.15407/itm2017.02.041

V. T. Marchenko, YE. P. Petlyak, N. P. Sazina, P. P. Khorolsky

      ABOUT THE AUTHORS

V. T. Marchenko
Institute of Technical Mechanics of the National Academy of Sciences of Ukraine and the State Space Agency of Ukraine
Ukraine

YE. P. Petlyak
State Enterprise “Design Bureau “Yuzhnoye” named after M. Yangel”
Ukraine

N. P. Sazina
Institute of Technical Mechanics of the National Academy of Sciences of Ukraine and the State Space Agency of Ukraine
Ukraine

P. P. Khorolsky
Institute of Technical Mechanics of the National Academy of Sciences of Ukraine and the State Space Agency of Ukraine
Ukraine

      ABSTRACT

      The research objective is to develop a modern method of an engineering evaluation of Earth remote sensing spacecraft based on an updated hierarchy T. Saati method. Creation of methodic support for a correct engineering evaluation of the state-of-the-art technology is motivated by the importance of this factor for evaluating the com- petiveness of the rocket and space technology under development. The paper presents a generalized method of the engineering evaluation of rocket and space products and its specification related to the issue of an engineering evaluation of Earth remote sensing spacecraft. The method under consideration has been employed for an engineering evaluation of the Sich-2M satellite in the development of the technical project Pdf (English)







      KEYWORDS

Earth remote sensing, spacecraft, method of hierarchy analysis, rocket and space technology, engineering level.

      FULL TEXT:

Pdf (English)









      REFERENCES

1. Kuleshov A. V., Prokopchik N. G., Bogomolov A. A., Abrosimov N. A. Methodic approach to evaluation of engineering level of universal starting complexes of space rockets using a generalized index. Vestnik Samarskogo Gosudarstvennogo Aerokosmicheskogo Universiteta. 2010. No 2. Pp. 198-203. (in Russian).

2. Galkevich I. A. Methodic approach to evaluation of commercial competiveness of rocket and space technology. Electronic Journal Trudy MAI. Issue 73. URL: http://www.mai.ru/science/trudy (in Russian).

3. Galkivich I. A. Development of Tools for Determination of Technical and Economical Parameters of Space Telecommunications Projects: Doctor's (Economics) Thesis: Adopted on July 8, 2015. Moscow, 2015. 283 pp. URL: http://search.rsl.ru/ru/record/01007987089. (in Russian).

4. Kryanev A. V., Semenov S. S. Method of evaluation of engineering level of complex engineering systems based on emerging technologies. Control of Large-Scale Systems. 2012. Iss. 39. Pp. 5-36. (in Russian).

5. RD 50-149-79. Methodic Recommendations for Evaluation of Engineering Level and Quality of Industrial Production. Adopted on 17 April, 1979 by the Order of All-Union state standard #1407. 121 pp. (in Russian).

6. Saati T. Decision-Making - Method of Hierarchy Analysis. Moscow: Radio i Svyaz, 1993. 278 pp. (in Russian).

7. Nogin V. D. A simplified variant of the hierarchy analysis on the ground of nonlinear convolution of criteria. Zh. Vychisl. Mat. Mat. Fiz. 2004. V. 44. No. 7. Pp. 1261-1270. (in Russian).





DOI: https://doi.org/10.15407/itm2017.02.041

Copyright (©) 2017 V. T. Marchenko, YE. P. Petlyak, N. P. Sazina, P. P. Khorolsky

Copyright © 2014-2018 Technical mechanics


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