Search Results for “single information space” – Collected book of scientific-technical articles https://journal.yuzhnoye.com Space technology. Missile armaments Tue, 28 Apr 2026 12:45:36 +0000 en-GB hourly 1 https://journal.yuzhnoye.com/wp-content/uploads/2020/11/logo_1.svg Search Results for “single information space” – Collected book of scientific-technical articles https://journal.yuzhnoye.com 32 32 12.2.2025 Algorithm for filling databases of the automated control system utilized at space rocketry enterprises, considering the differentiation of working and archived information. https://journal.yuzhnoye.com/content_2025_2-en/annot_12_2_2025-en/ Tue, 27 Jan 2026 09:26:33 +0000 https://journal.yuzhnoye.com/?page_id=35849
Approaches to devising a methodology for developing software based on a single database for enterprise management were improved, taking into account the requirements of enterprises in the rocket and space industry, by creating new programs that allow the application of modern information technologies.
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12. Algorithm for filling databases of the automated control system utilized at space rocketry enterprises, considering the differentiation of working and archived information.

Date of receipt of the article for publication: 29.09.2025

Date of acceptance of the article for publication after review: 13.10.2025

Date of publication: 27.01.2026

ISSN: 2617-5525

e-ISSN: 2617-5533

ORCID authors:

Manko T. A.1 ORCID, Husarova I. O.2 ORCID, Klymenko D. V.2 ORCID

Organization:

Oles Honchar Dnipro National University1, Yangel Yuzhnoye State Design Office2

Page: Kosm. teh. Raket. vooruž. 2025 (2); 105-111

DOI: https://doi.org/10.33136/stma2025.02.105

Language: Ukrainian

Annotation: The application of modern information technologies in enterprises of the rocket and space industry is an essential component for ensuring the high quality of economic activity. These technologies, such as the design of new systems and parts, the management of production cycles, the optimization of logistics operations, and the maintenance of fi nancial, economic, and accounting documentation, are actively integrated into the automation of various processes. This approach enables not only meeting modern market requirements and technological standards, but also achieving a signifi cant increase in the overall effi ciency of the enterprise. To increase the productivity of the automated control system (ACS) databases of Yuzhnoye State Design Offi ce and organize the disk space on servers through data archiving, the problems that arise when implementing the algorithm for fi lling ACS databases were investigated, taking into account the distinction between working and archival information in modern domestic enterprises, and recommendations were developed for resolving those problems. Approaches to devising a methodology for developing software based on a single database for enterprise management were improved, taking into account the requirements of enterprises in the rocket and space industry, by creating new programs that allow the application of modern information technologies. The practical signifi cance of the obtained results lies in the development of recommendations that can be used in the activities of Yuzhnoye State Design Offi ce and other enterprises. The warranty period for the servers and data storage systems at the enterprise has expired, which resulted in failures of a signifi cant amount of IT capacity. The implementation of this algorithm allows for promptly reducing the load on computing power and enhancing the fault resistance of computer systems. It will facilitate the process of making appropriate management decisions and ensure that management personnel are provided with relevant, targeted, complete, practical, and comparable information.

Key words: automation, rocket and space technology, programming, data processing, database, algorithm

Bibliography:

1. Ohorodnik M. i Zelinska O. Perevahy ta nedoliky reliatsiinykh ta nereliatsiinykh baz danykh. Prykladni aspekty suchasnykh mizhdystsyplinarnykh doslidzhen: materialy І Vseukr. nauk.-prakt. konf. (m. Vinnytsia, 26 lyst. 2021 r.), Vinnytsia, 2021. S. 106-108.
2. Dobrolubova M. V. Prohramuvannia baz danykh: konspect lektsii: navch. posib. dlia stud. spetsialnosti 152 «Metrologiia ta informatsiino-vymiriuvalna tekhnika». Kyiv: KPI im. Ihoria Sikorskoho, 2021. 275 s.
3. Dotsenko S. I. Orhanizatsiia ta systemy keruvannia bazamy danykh: Navch. posibnyk. Kharkiv: UkrDUZT, 2023. 117 s.
4. Zavadskyi I. O. Osnovy baz Danykh: Navch. posib. K. 2011. 192 s.
5. Ibraieva L. K. Proektirovanie baz danny’x. Konspekt lekcy’j dlya studentov vsex form obucheniya special’nosti 5В0702 – Avtomatizaciya i upravlenie. Almaty: AIES, 2010. 63 s.
6. Stvorennia povnoi rezervnoi kopii bazy danykh. URL: https://learn.microsoft.com/ru-ru/sql/relational-databases/backup-restore/create-a-full-database-backup-sql-server?view=sql-server-ver16&_gl=1*5hfglu*_gcl_au*MTUxMjE2NzIxOS4xNzMyNzMwNjMz (data zvernennia 29.11.24).
7. Vasilyeva E., Krupnov Yu. Development of the methodological approach to the comprehensive assessment of the innovative project effectiveness. E3S Web of Conferences. № 164, 2020, art.n. 10037. https://doi.org/10.1051/e3sconf/202016410037

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10.2.2025 Digitalization of design documentation development processes within the enterprise https://journal.yuzhnoye.com/content_2025_2-en/annot_10_2_2025-en/ Tue, 27 Jan 2026 09:11:55 +0000 https://journal.yuzhnoye.com/?page_id=35843
The article emphasizes that digitalization and the utilization of a single information space produce a basis for further devising innovative solutions and ensuring the enterprise’s sustainability under digital economy conditions. digital , single information space , project-based approach Bibliography: 1. digital , single information space , project-based approach .
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10. Digitalization of design documentation development processes within the enterprise

Date of receipt of the article for publication: 29.09.2025

Date of acceptance of the article for publication after review: 13.10.2025

Date of publication: 27.01.2026

ISSN: 2617-5525

e-ISSN: 2617-5533

Автори: Trubin A. V., Prykhodko M. V., Deineko L. M.

Organization: Yangel Yuzhnoye State Design Office

Page: Kosm. teh. Raket. vooruž. 2025 (2); 85-92

DOI: https://doi.org/10.33136/stma2025.02.085

Language: Ukrainian

Annotation: The article examines the process of implementing digitalization for product making using the example of design documentation development at Yuzhnoye SDO in conformity with the Industry 4.0 concept. This concept applies four principles: compatibility, transparency, continuous support, and decentralization. The article also examines the principles of digital transformation, the advantages of integrating Computer-Aided Design (CAD), Computer-Aided Engineering (CAE), Computer-Aided Manufacturing (CAM), Product Data Management (PDM), and Product Lifecycle Management (PLM), the improvement of the enterprise’s unifi ed information space, and the application of the project-based approach to product development. This approach has signifi cantly increased the effi ciency of design processes. Foremost, reducing the number of hours for approving design documentation is noted, as all data is centrally stored and processed in a single digital environment. The automated generation of workfl ow provides a high level of consistency and reduces the risk of errors during manual preparation of documents. In addition, the parametric and skeletal modeling allows for prompt changes in the structural elements of the product, which are automatically refl ected in all related documents. The article specifi cally focuses on the formulation of distinct requirements for templates, wireframes, interfaces, parameter tables, sketches, 3D models of parts and assembly units, drawings, and bills of materials. These requirements ensure the same rules of work among all project participants, enabling professionals to navigate the product structure promptly, understand the logic of model construction, make changes, and make technical decisions. The article emphasizes that digitalization and the utilization of a single information space produce a basis for further devising innovative solutions and ensuring the enterprise’s sustainability under digital economy conditions.

Key words: Industry 4.0, CAD / CAE / CAM / PDM, Project Management Body of Knowledge (PMBOK), digital, single information space, project-based approach

Bibliography:

1. Yurchak O.V., Stepanets O.V., Nekrashevych O.V. Vyrobnychi KPE: aktualnyi stan ta perspektyvy rozvytku v Ukraini. Asotsiatsiia pidpriiemstv promyslovoi avtomatyzatsii Ukrainy, 2019. 44 s. URL: https://tk185.appau.org.ua/whritepapers/aCampus-whitepaper-ISO22400+++.pdf‎
2. Madison A. Thompson, Understanding the Basic of Industry 4.0. 2023. 266 p.
3. Dehtiarov M. O., Yurchak O. V., Paramonov O. H., Potapovych L. P., Trubin A. V., Deineko L. M., Zievako V. S. Stvorennia suchasnoi metodyky navchannia z vykonannia proiektiv.: Zb. materialiv konf. «Suchasni problemy mekhaniky u konstruktsiiakh spetsialnoho pryznachennia». 2025. 452 s.
4. McFarlane B. Autodesk Inventor Exercises: for Autodesk Inventor and Other Feature-Based Modeling Software. Routledge. 2017. 434 p. https://doi.org/10.4324/9781315725802
5. Project Management Institute: Posibn. do Zvodu znan z upravlinnia proiektamy (PMBoK Guide). 6-te vyd. Niutaun Skver, Pensilvaniia, SSHA: Project Management Institute, 2017. 726 s.

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3.1.2025 Experimental research on separation diaphragm performance in propellant storage and feed systems of liquid propellant tanks https://journal.yuzhnoye.com/content_2025_1-en/annot_3_1_2025-en/ Wed, 27 Aug 2025 12:40:38 +0000 https://journal.yuzhnoye.com/?page_id=35481
The relevance of this study arises from the need to ensure the reliable separation of gas and liquid duringthe operation of aerospace systems under diff erent conditions. A Computational and Experimental Analysis of Spacecraft Propellant Tanks Implemented with Flexible Diaphragms. Reversal modeling and optimal design of hyper-elastic diaphragm in space fuel tanks. International Conference Optoelectronic Information and Optical Engineering (OIOE 2024), 2024, Wuhan, China.
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3. Experimental research on separation diaphragm performance in propellant storage and feed systems of liquid propellant tanks

ISSN: 2617-5525

e-ISSN: 2617-5533

Автори: Shulha V. A., Pidhainyi A. I., Mudrov D. S.

Organization: Yangel Yuzhnoye State Design Office, Dnipro, Ukraine

Page: Kosm. teh. Raket. vooruž. 2025 (1); 19-27

DOI: https://doi.org/10.33136/stma2025.01.019

Language: Ukrainian

Annotation: This paper presents the results of comprehensive research on the operational performance of diaphragm separators utilized in the fuel storage and supply systems for liquid-propellant rocket engines (LPRE). The relevance of this study arises from the need to ensure the reliable separation of gas and liquid duringthe operation of aerospace systems under diff erent conditions. In this context, special attention is given to autonomous bench tests that enable the evaluation of the key performance parameters of diaphragms before integrating them into production models. The paper examines the shape transformation of spherical diaphragms under external loads, presents an analytical calculation of the initial diaphragm inversion radius, and identifi es the critical pressures that cause buckling. The results of this calculation demonstrate a satisfactory correlation with the experimental data obtained during testing. The methodology for qualifi cation tests conducted on fi ve diff erent diaphragm variants is described. Several technological and design measures have been implemented to enhance product quality. They included increasing the number of drawing passes from two to three with intermediate annealing, reducing the thickness of the blanks, and enlarging the non-rolled polar zone. It was found that the primary factor ensuring defect-free diaphragm inversion is the reduced number of roller passings along the diaphragm contour, which prevents the tearing of the surface layer. The test results for diff erent diaphragm variants confi rmed satisfactory performance. An analysis of pressure diff erentials across the diaphragms during inversion confi rmed compliance with the technical specifi cations. The study concluded that the diaphragm design, when it incorporates all corrective measures, ensures defect-free inversion while maintaining the required pressure diff erential and is recommended for further testing as part of standard tank assemblies.

Key words: Strength parameters; aircraft, space and rocket technologies; design parameters; mathematical simulation; fuel tank; separation diafragm; autonomous bench testing; critical pressure

Bibliography:

1. Ballinger I. A., Lay W. D., Tam W. H. Review and History of PSI Elastomeric Diaphragm Tanks. 31st AIAA/ASME/SAE/ASEE Joint Propulsion Conference & Exhibit. 10-12
July 1995, San Diego, CA, USA. DOI: https://doi.org/10.2514/6.1995-2534.

2. Hartwig J. W. A detailed historical review of propellant management devices for low gravity propellant acquisition. 52nd AIAA/SAE/ASEE Joint Propulsion Conference,
25-27 July 2016, Salt Lake City, USA. Reston: American Institute of Aeronautics and Astronautics. DOI: https://doi.org/10.2514/6.2016-4772.

3. Lenahen B., Gangadharan S., Desai M. A Computational and Experimental Analysis of Spacecraft Propellant Tanks Implemented with Flexible Diaphragms. Proceedings of
the 54th AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics, and Materials Conference. Boston, Massachusetts, USA: American Institute of Aeronautics and
Astronautics. DOI: https://doi.org/10.2514/6.2013-1886.

4. Sabaghzadeh H., Shafaee M. Reversal modeling and optimal design of hyper-elastic diaphragm in space fuel tanks. SN Applied Sciences. 2021. Vol. 3, Article number:
792. DOI: https://doi.org/10.1007/s42452-021-04785-0

5. Conomos H. A., Alongi C. G., Moore J., Yager J., Goddard R., Salzler T., Fetes J., Burch K. Development of 10 inch Diameter Titanium Rolling Metal Diaphragm Tank
for Green Propellant. AIAA Propellant Storage and Management II. DOI: https://doi.org/10.2514/6.2017-4915.

6. Jøraholmen T., Korsvold S., Sandvold P., Luktvasslimo Ø., Snilsberg K. E.
Roadmap towards a qualified aluminium green propellant diaphragm tank. Aerospace Europe Conference 2023 – 10ᵀᴴ EUCASS – 9ᵀᴴ CEAS, 9-13 July 2023, Lausanne, Switzerland.
Lausanne: EUCASS. DOI: https://doi.org/10.13009/EUCASS2023-093.

7. Shen Y. A computational analysis of reversal behaviors of a spacecraft propellant management device. International Conference Optoelectronic Information and Optical
Engineering (OIOE 2024), 2024, Wuhan, China. Bellingham: SPIE, 2025. (Proceedings of SPIE; Vol. 13513). DOI: https://doi.org/10.1117/12.3045569.

8. Windisch M., Beck R. Numerical Simulation and Optimisation of a Hemisсherical Metallic Membrane Designed for Positive Expulsion of a Propellant Tank (for
Replacement of Conventional PMD). Spacecraft Structures, Materials and Mechanical Testing: Proceedings of a European Conference, 4-6 November 1998, Braunschweig,
Germany. Paris: European Space Agency (ESA), 1999. Vol. 428. P. 45. ISBN 9290927127.

9. Mudrov D.S., Zil V.V. Doslidzhennia napruzheno-deformovanoho stanu vytysknykh diafrahm. Heotekhnichna mekhanika: zb. nauk. prats. / In-t heotekh. mekh. im. M.S.
Poliakova NAN Ukrainy. Dnipro, 2016. Vyp. 131. S. 173-182.

10. Mozharovskii M.S. Teoriia pruzhnosti, plastychnosti i povzuchosti: pidruchnyk / M.S. Mozharovskyi. K. : Vyshcha shkola, 2002. 308 s.

11. Libai A., Simmonds J.G. The Nonlinear Theory of Elastic Shells. 2nd ed. Cambridge: Cambridge University Press, 1998. 564 p. ISBN 978-0-521-01976-7.

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3.1.2025 Experimental research on separation diaphragm performance in propellant storage and feed systems of liquid propellant tanks
3.1.2025 Experimental research on separation diaphragm performance in propellant storage and feed systems of liquid propellant tanks
3.1.2025 Experimental research on separation diaphragm performance in propellant storage and feed systems of liquid propellant tanks

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6.1.2017 Drought Post-Effects Satellite Monitoring https://journal.yuzhnoye.com/content_2017_1/annot_6_1_2017-en/ Tue, 27 Jun 2023 12:02:02 +0000 https://journal.yuzhnoye.com/?page_id=29420
Abstract of paper for the International Scientific-Practical Conference “Advanced Methods Space Information Processing and Analysis” (3-4 December, 2015, Dnipropetrovsk, Noosphere Ventures inc.).
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6. Drought Post-Effects Satellite Monitoring

ISSN: 2617-5525

e-ISSN: 2617-5533

Organization:

Yangel Yuzhnoye State Design Office, Dnipro, Ukraine1; Oles Honchar Dnipro National University, Dnipro, Ukraine2

Page: Kosm. teh. Raket. vooruž. 2017 (1); 35-42

Language: Russian

Annotation: The analysis of medium- and high-resolution satellite images is made for the purpose of evaluating the impact of 2011-2015 drought on large freshwater basins of California. The considerable coast line shifts of Oroville and Folsom lakes were revealed.

Key words:

Bibliography:
1. Mozgovoy D. K., Voloshin V. I. Coastline Imaging Technique. Collection of abstracts of the 6th Ukrainian Conference on Space Research (Crimea, Yevpatoriya, NTsUIKS, 3-10 September, 2006). NASU-SSAU Space Research Institute, 2006. P. 136.
2. Mozgoviy D. K., Parshina O. I., Voloshin V. I., Bushuev Y. I. Remote Sensing and GIS Application for Environmental Monitoring and Accidents Control in Ukraine. Geographic Uncertainty in Environmental Security / Edited by A. Morris, S. Kokhan. Dordrecht, 2007. P. 259-270.
3. Mozgovoy D. K., Voloshin V. I. Coastal Zones Imaging Technology. Present-Day Problems of Rational Nature Management in Sea Offshore Strips of Ukraine: Abstracts of papers for the International Conference of Young Scientists (Sevastopol – Katsiveli, 12-14 June, 2007). Sevastopol, 2007. P. 21-22.
4. Mozgovoy D. K. Use of Earth Observation Data for Natural Resources Monitoring. Scientific Readings “Space Technologies for the Benefit of Sustainable Development and Security of Society” (National Center of Aerospace Education of the Youth of Ukraine, Dnipropetrovsk, 18 May, 2007). Dnipropetrovsk, 2007. http://www.festival.nas.gov.ua/2007/Measures/ Pages/1062.aspx.
5. Mozgovoy D. K Increase of Information Capacity of Satellite Imaging of Small-Size Objects on Earth Surface. Program of Scientific Conference on results of research work of the University in 2012. Dnipropetrovsk, 2012. P. 92.
6. Mozgovoy D. K. Satellite Images Processing when Solving Applied Tasks. Abstract of paper for the International Scientific-Practical Forum “Science and Business” (29-30 June, 2015, Dnipropetrovsk, Noosphere Ventures inc.). P. 191-194.
7. Mozgovoy D. K. Satellite Monitoring of Forest Fires and Droughts. Abstract of paper for the International Scientific-Practical Conference “Advanced Methods Space Information Processing and Analysis” (3-4 December, 2015, Dnipropetrovsk, Noosphere Ventures inc.). P. 48-53.
8. Mozgovoy D. K., Vasilyev V. V. Analysis of Multiyear Drought Based on Landsat-8 Data. DNU concl. Space Rocketry. 2016. Issue 13, Vol. 24. No. 4. P. 79-89.
9. Mozgovoy D. K. Monitoring of Droughts Consequence by High Resolution Satellite Images. Ecology and Noospherology. 2016. Vol. 27, No. 1-2. P. 89-90.
10. Mozgovoy D. K. Monitoring of Droughts Consequence by High Resolution Satellite Images. Ecology and Noospherology. Vol. 27, No. 1-2. Kyiv – Dnipropetrovsk, 2016. P. 90-95.
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6.1.2017 Drought Post-Effects Satellite Monitoring
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Peer Review Policy https://journal.yuzhnoye.com/reviewing-en/ Thu, 04 May 2023 09:27:34 +0000 https://test8.yuzhnoye.com/?page_id=26183
Peer Review Policy Peer review (expert evaluation) is conducted to ensure a high scientific and technical standard of the Space Technology. If the article meets the requirements for publication in the Collection, it is forwarded to the technical editor, who assigns a registration code and removes all author-identifying information.
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Peer Review Policy

Peer review (expert evaluation) is conducted to ensure a high scientific and technical standard of the Space Technology. Missile Armaments Collection of Scientific Articles.

The purpose of peer review is to obtain an objective expert evaluation of a scientific article concerning its relevance, scientific novelty, practical significance, and compliance with established requirements by a specialist in the relevant field of knowledge.

The Editorial Board organizes independent, impartial, and confidential peer review of all submitted manuscripts in accordance with generally accepted principles of international publication ethics and modern editorial standards. In its activities, the Board follows the recommendations of the Committee on Publication Ethics (COPE), the Publishing Ethics Resource Kit (PERK) of Elsevier, and the practices of leading international scientific publishers.

Peer review is conducted under a double-blind model, which ensures mutual anonymity of authors and reviewers. All reviewers shall act objectively and comply with the provisions of the Publication Ethics and Editorial Policy sections of the journal.

Peer review procedure

  1. Initial editorial screening. Submitted manuscripts undergo a preliminary assessment for compliance with the scope of the Collection, scientific quality, formatting requirements, and principles of academic integrity (including checks for plagiarism and the use of artificial intelligence). The Editorial Board reserves the right to reject a manuscript at this stage without external review. The initial evaluation is carried out by the Editor-in-Chief or their Deputy. In cases where the Editor-in-Chief has a conflict of interest (as an author, co-author, or due to personal or professional relationships with the authors), the evaluation is conducted by the Deputy Editor-in-Chief or another member of the Editorial Board without a conflict of interest. If the article meets the requirements for publication in the Collection, it is forwarded to the technical editor, who assigns a registration code and removes all author-identifying information.
  2. Appointment of reviewers. Reviewers are appointed by the Editorial Board from among independent experts in the relevant field, taking into account their scientific competence and absence of conflicts of interest. External reviewers may include both Ukrainian and international scholars specializing in the same scientific area as the authors. An invitation letter is sent on behalf of the Editorial Office, accompanied by the anonymized manuscript and a review form. Reviewers shall not be affiliated with the same institution as the author and shall have no conflicts of interest.
  3. Expert evaluation. Reviewers evaluate the manuscript according to the following criteria:
  • Relevance and significance of the topic.
  • Scientific novelty of the results.
  • Methodological soundness.
  • Reliability and validity of the data obtained.
  • Logical structure and quality of presentation.
  • Compliance with international standards of scientific writing.
  1. Editorial decision based on peer review. Based on the evaluation, reviewers provide one of the following recommendations:
  • Accept for publication.
  • Accept after revision.
  • Reject.
  1. Revision of the manuscript. If revision is required, authors shall submit a revised version of the manuscript within the specified period (up to one month), along with responses to the reviewer’s comments. The Editorial Office may initiate a second round of peer review.
  2. Appealing procedure. If the authors disagree with the reviewer’s conclusions, they have the right to submit a reasoned appeal. The Editorial Board makes the final decision on the appeal.
  3. Final decision on publication. The Editorial Board makes the final decision on publication based on the reviewers’ reports and with due consideration of compliance with ethical standards.
  4. Confidentiality. Peer review is conducted in accordance with the principles of confidentiality. Manuscripts and reviews shall not be disclosed to third parties without appropriate permission. The Editorial Office retains reviews for a minimum of three years.
Peer Review Policy
Peer Review Policy
Peer Review Policy
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