Ðóñ Eng Cn Translate this page:
Please select your language to translate the article


You can just close the window to don't translate
Library
Your profile

Back to contents

Software systems and computational methods
Reference:

Baykin V.A., Stetsyuk A.N. The formalization of technological control procedures of the life cycle of complex engineering systems

Abstract: The subject of the study are technological procedures for monitoring the life cycle of complex engineering systems, which are implemented by a sequence of operations of data collection, processing and accounting information, analysis and formulation of the problem, followed by managerial decision-making. It is shown that the problem of synthesis of model of monitoring procedures of the action plan for the creation, operation or testing of samples of complex engineering systems for the formal statement are adequate to the monitoring and classification task. That allows applying the methods for solving such problems to solve the given problem. Research methods include structured systems analysis, complex systems theory, the theory of reliability of quality control, information and logical design and set theory. The study shows that the implementation of a number of transactions within different procedures is advisable only when the input data for the considered operation change. Using the results of execution of the same operations with the same source data, considered when performing various procedures, is one of the ways to optimize process control procedures of the life cycle of complex engineering systems.


Keywords:

management control procedure, automated quality control, formalization of procedures, classification procedure, complex engineering systems, technological preparation of production, control of the life cycle, system life cycle, model of control object, diagnosis of the state of the object


This article can be downloaded freely in PDF format for reading. Download article

This article written in Russian. You can find original text of the article here .
References
1. Shipilov V.V. Kontseptual'naya model' i metodologiya postroeniya unifitsirovannykh sredstv kontrolya radioelektronnogo oborudovaniya // Avtomatizatsiya i sovremennye tekhnologii. 2010. ¹ 7. S. 23-27.
2. Chirov D.S., Tereshonok M.V., Elsukov B.A. Metod i algoritmy optimizatsii tekhnicheskikh kharakteristik kompleksov radiomonitoringa // T-Comm: Telekommunikatsii i transport. 2014. T. 8. ¹ 10. S. 88-92.
3. Feshchenko K.B., Rudakov S.V., Kozlov V.E. i dr. Matematicheskaya model' dinamiki srednei chislennosti priborov i apparatov meditsinskogo naznacheniya v usloviyakh razomknutogo tsikla metrologicheskogo obsluzhivaniya // Biomeditsinskaya radioelektronika. 2006. ¹ 5-6. S. 99-103.
4. Fedorov M.V., Kalinin K.M., Bogomolov A.V., Stetsyuk A.N. Matematicheskaya model' avtomatizirovannogo kontrolya vypolneniya meropriyatii v organakh voennogo upravleniya // Informatsionno-izmeritel'nye i upravlyayushchie sistemy. 2011. T. 9. ¹ 5. S. 46-54.
5. Rudakov I.S., Rudakov S.V., Bogomolov A.V. Metodika identifikatsii vida zakona raspredeleniya parametrov pri provedeniya kontrolya sostoyaniya slozhnykh sistem // Informatsionno-izmeritel'nye i upravlyayushchie sistemy. 2007. T. 5. ¹ 1. S. 66-72.
6. Maksimov I.B., Stolyar V.P., Bogomolov A.V. Prikladnaya teoriya informatsionnogo obespecheniya mediko-biologicheskikh issledovanii. M.: Binom, 2013. 312 s.
7. Makarenko V.G., Podorozhnyak A.A., Rudakov S.V. i dr. Inertsial'no-sputnikovaya navigatsionnaya sistema upravleniya transportnymi sredstvami // Problemy upravleniya. 2007. ¹ 1. S. 64-71.
8. Lebedev G.N. Metody prinyatiya operativnykh reshenii v zadachakh upravleniya i kontrolya. M: MAI, 1992. 120 s.
9. Kukushkin Yu.A., Bogomolov A.V., Ushakov I.B. Matematicheskoe obespechenie otsenivaniya sostoyaniya material'nykh sistem // Informatsionnye tekhnologii. 2004. ¹ 7. 32 s.
10. Kolomiets L.V., Fedorov M.V., Bogomolov A.V., Merezhko A.N., Soldatov A.S., Esev A.A.Metod podderzhki prinyatiya reshenii po upravleniyu resursami pri ispytaniyakh aviatsionnoi tekhniki // Informatsionno-izmeritel'nye i upravlyayushchie sistemy. 2010. T.8. ¹ 5. S. 38-40.
11. Kozlov V.E., Bogomolov A.V., Rudakov S.V., Olenchenko V.T. Matematicheskoe obespechenie obrabotki reitingovoi informatsii v zadachakh ekspertnogo otsenivaniya // Mir izmerenii. 2012. ¹ 9. S. 42-49.
12. Esev A.A., Merezhko A.N., Tkachuk A.V. Tekhnologiya kvalimetrii tekhnicheskogo urovnya slozhnykh sistem // Vestnik komp'yuternykh i informatsionnykh tekhnologii. 2014. ¹ 7 (121). S. 28-34.
13. Dmitriev A.K., Mal'tsev P.A. Osnovy teorii postroeniya i kontrolya slozhnykh sistem.-L: Energoatomizdat, 1988. 192 s.
14. Dimitriev Yu.V., Lagoiko O.S. Strukturnyi sistemnyi analiz informatsionnykh potokov pri ergonomicheskom proektirovanii vozdushnykh sudov // Kibernetika i programmirovanie. 2015. ¹ 1. S. 67-76.
15. Golosovskii M.S., Esev A.A., Bogomolov A.V. Kompleks avtomatizirovannoi ekspertizy tekhnicheskogo urovnya slozhnoi sistemy // Svidetel'stvo o gosudarstvennoi registratsii programmy dlya EVM ¹ 2014612330 ot 25.02.2014 g. Opubl. 20.03.2014, byull. ¹ 2. – 1 s.
16. Vorob'ev A.A., Lagoiko O.S. Informatsionno-diagnosticheskie sistemy vstroennogo kontrolya sostoyaniya vozdushnykh sudov // Programmnye sistemy i vychislitel'nye metody. 2014. ¹ 4. S. 437-445.
17. Shipilov V.V. Ob epimorfnom preobrazovanii mnogomernykh dannykh v zadachakh postroeniya slozhnykh tekhnicheskikh sistem // Voprosy teorii bezopasnosti i ustoichivosti sistem. 2014. ¹ 16. S. 27-39