Preview

Russian Technological Journal

Advanced search

Principles of creation of the big territorially distributed automated systems

https://doi.org/10.32362/2500-316X-2020-8-1-34-42

Abstract

The article defines large territorially distributed automated systems, which include systems that collect and process information from spatially spaced sensors on objects. Examples of such automated systems are military systems, such as a missile attack warning system, a space control system, strategic and non-strategic missile defense systems, and civil systems, such as the state automated Control system, the air traffic control system and other systems. The purpose of these systems is the continuous monitoring of the state of a set of certain objects, the environment of their functioning, the constant assessment of the parameters of objects, the identification of dangerous situations in the behavior of objects and the environment, as well as the development of measures to reduce the level of possible security threats and eliminate dangerous situations.

The typical structure of large territorially distributed automated systems includes sources and consumers of information, telecommunication facilities, as well as a center for processing input data and preparing information for consumers. The sources of information are operators, technical means of observation and specialized measuring instruments. Telecommunication means of big territorially distributed automated systems are formed in two ways. The first option uses existing global data net-works. In the second variant, self-made data transmission networks are formed on the basis of specially created means of data transmission and the use of dedicated data channels. The center of input data processing and information preparation contains a complex of automation tools and personnel providing maintenance, repair and operation.

The functions and the most significant hardware and software components of large territorially distributed automated systems are presented. The main indicators of quality of their functioning and stages of life cycle are characterized: development of requirements, creation of a prototype, certification, mass production, operation, modernization, the end of operation and utilization.

About the Authors

V. A. Tretyakov
MIREA – Russian Technological University; JSC «Vimpel»
Russian Federation

Victor A. Tretyakov – Dr. Sci. (Engineering), Professor, Head of the Basic Department of Automated Radio Systems, Institute of Radio Engineering and Telecommunication Systems

78, Vernadskogo Pr., Moscow 119454



G. V. Kulikov
MIREA – Russian Technological University
Russian Federation

Gennadiy V. Kulikov – Dr. Sci. (Engineering), Professor, Professor of Department of Radio Electronic Systems and Complexes, Institute of Radio Engineering and Telecommunication Systems

78, Vernadskogo Pr., Moscow 119454



Yu. F. Lukyanets
MIREA – Russian Technological University; JSC «Vimpel»
Russian Federation

Yuriy F. Lukyanets – Cand. Sci. (Engineering), Associate Professor of the Basic Department of Automated Radio Systems, Institute of Radio Engineering and Telecommunication Systems

78, Vernadskogo Pr., Moscow 119454



References

1. Ianov S. (Ed.). Oruzhie i tekhnologii Rossii (Russiaʼs arms and technologies): Encyclopedia. XXI century. V. 9. Protivovozdushnaya i protivoraketnaya oborona (Air and missile defense). Moscow: Weapons and technology; 2004. 752 p. (in Russ.). ISBN 5-93799-015-3

2. Grin՚ko V.F., Lyukhin V.A., Sukhanov S A. Sistemy i sredstva raketno-kosmicheskoi oborony (Space rocket defense systems and equipment). Moscow: ANO «COPI»; 2012. 254 p. (in Russ.). ISBN 978-5-88070-227-5

3. Anodina T.G, Kuznetsov A.A, Markovich E.D. Avtomatizatsiya upravleniya vozdushnym dvizheniem (Automation of air traffic control). Moscow: Transport; 1992. 280 p. (in Russ.). ISBN 5-277-01403-9

4. Kurepin V.V., Morozov O.G., Zaidullin S.S. etc. Geographically distributed system for the storage of hazardous substances and ensure their ecological safety. Vestnik tekhnologicheskogo universiteta = Herald of Technological University. 2016;19(13):164-169 (in Russ.).

5. Frolov A.V., Sigov A.S., Kutuzov V.M., Trubitsyn A.V., Kovalenko V.V., Zamuruev S.N., Kulikov G.V., Zatsepin A.G., Sobchuk V. .A., Tkachev G.N., Egorov V.A., Telegin V.A., Kaptyug A.A. The concept of creating an integrated monitoring system of coastal waters. In Proceedings of the IV All-Russian Scientific and Technical Conference “RTI Sistemy VKO – 2016”. 2017. P. 216-224 (in Russ.).

6. Shabalin V.A. (Ed.). Volodin S.V., Makarov A.N., Umrikhin Yu.D., Faradzhev V.A. Obshchesistemnoe proektirovanie ASU realʼnogo vremeni (System-wide design of ACS real-time). Moscow: Radio i svyaz'; 1984. 232 p. (in Russ.).

7. Kontorov DS, Golubev-Novozhilov Yu.S. Vvedenie v radiolokatsionnuyu sistemotekhniku (Introduction to radar systems engineering). Moscow: Sovetskoe radio; 1971. 368 p. (in Russ.).

8. Lyaskovsky V.L., Bresler I.B. Methodology of substantiation of the plan to equip controls of geographically distributed organizational information and control systems with automation means. Elektronnye informatsionnye sistemy = Electronic information systems. 2016;4(11):19-30 (in Russ.).

9. Chuvakov A.V. Concept formation of decision support system in the management of global distributed organizational systems. Vestnik Samarskogo gosudarstvennogo tekhnicheskogo universiteta. Seriya: Tekhnicheskie nauki = Vestnik of Samara State Technical University. Technical Sciences Series. 2016;2(50):74-82 (in Russ.).

10. Korikov A.M., Sonkin M.A., Pozdnyakov A.A. Problems of distributed informational telecommunication systems creation for monitoring and control tasks solving. Doklady Tomskogo gosudarstvennogo universiteta sistem upravleniya i radioelektroniki = Proceedings of Tomsk State University of Control Systems and Radio Electronics. 2004;2(10):45-56 (in Russ.).


Review

For citations:


Tretyakov V.A., Kulikov G.V., Lukyanets Yu.F. Principles of creation of the big territorially distributed automated systems. Russian Technological Journal. 2020;8(1):34-42. (In Russ.) https://doi.org/10.32362/2500-316X-2020-8-1-34-42

Views: 1144


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2782-3210 (Print)
ISSN 2500-316X (Online)