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Tytuł artykułu

Structural – functional model of maintenance and repair of the traction substations equipment

Treść / Zawartość
Identyfikatory
Warianty tytułu
PL
Strukturalno-funkcjonalny model utrzymania i napraw wyposażenia podtsacji trakcyjnych
Języki publikacji
EN
Abstrakty
EN
To solve the problem of improving the quality control of substation equipment maintenance and repair process the structural and functional analysis for the distances of power supply has been performed. As a linguistic support for this task the International Standards Package Modeling IDEF (Icam Definition) has been used. It allows to analyze the process from three key perspectives at the same time – IDEFO (Integrated Definition for Function Modeling), IDEF3 and DFD (Data Flow Diagram). IDEF modeling is a way to reduce the amount of costly errors by structuring the process in the early stages of creating intelligent systems. It improves the communication between users and developers and smooth the transition from analysis to design. A complex task of equipment maintenance and repair process has been divided into a series of simple tasks on the basis of IDEF modeling. Structural - functional modeling with the selection of events has been done according to the IDEF0 methodology. Description of processes has been done according to the methodology IDEFЗ. DFD method has been used for building the data flow diagrams. Conducted structural-functional analysis has been shown that at some stages this process often requires the operational definition of different types of resources needed to perform repair work.
Rocznik
Strony
49--52
Opis fizyczny
Bibliogr. 17 poz., rys., tab.
Twórcy
autor
  • Dnepropetrovsk National University of Railway Transport named after Academician V. Lazarian, Dnipro, Ukraine
autor
  • Dnepropetrovsk National University of Railway Transport named after Academician V. Lazarian, Dnipro, Ukraine
autor
  • Instytut Kolejnictwa, Warszawa, Poland
Bibliografia
  • 1. Analysis of the work of Electrification and Power Supply Department in 2015, 2016. Kyiv.
  • 2. Matusevych, O. O., Mironov, D. V., Study of the manual power equipment of traction electrification system of the railways. Science and Transport Progress. Bulletin of Dnipropetrovsk National University of Railway Transport, 2015, No. 1 (55).
  • 3. Matusevych, O. O. & Sychenko, V. G. & Bialon A., Continuous improvement of technical servicing and repair system of railway substation on the basis of FMEA methodology. „Technika Transportu Szynowego” 2016, nr 1–2.
  • 4. Tkachenko O. P., Moskalets Y. V., Angelov N. P., Pacovski R. Y., Some issues of technology development of a quality management system in railway transport. Science and Transport Progress. Bulletin of Dnipropetrovsk National University of Railway Transport, 2006, Vol. 13.
  • 5. Chaykovskaya E. A., Improvement of the management company through the implementation of MS ISO 9000. Science and Transport Progress. Bulletin of Dnipropetrovsk National University of Railway Transport, 2006, Vol. 13.
  • 6. Norris M., Rigby P., Stockman S., Life After IS0 9001: British Telecom’s Approach to Sohare Quality. IEEE Communications Magazine 1994.
  • 7. Hauke K., Process Approach to Management Knowledge Objects Managerial Expertise for Distance Learning. Proceedings of the Federated Conference on Computer Science and Information Systems – ACSIS, 2015, No.5.
  • 8. Lipuntsov Y. P.,. Management of processes. Enterprise management methods using information technology. DMK Pressm 2003, Мoscow.
  • 9. Repin V. V., Two interpretations of the process approach to enterprise management. Methods of quality management, 2003, No. 4.
  • 10. Production enterprise. Мoscow: Economy.
  • 11. GOST R 50.1.028-2001. Information technology support of the product life cycle. Methodologies for functional modeling. Мoscow: IPK: Standarts Publishing.
  • 12. Marca D., Mcgowan K., Methodology of structural analysis and design. MetaTechnology 1993, Мoscow.
  • 13. Montevechi J. A. B., De Oliveira M. L. Moura, Leal F., De Pinho A. F., Analysis of the applicability of the idef-sim modeling technique to the stages of a discrete event simulation project. Proceedings of the 2014 Winter Simulation Conference 2014.
  • 14. Cheremnykh St, Semenov I. A., Ruchkin, V. C., Modeling and analysis of systems: IDEF-technologies: workshop. Financial and Statistics, Мoscow, 2002.
  • 15. Yong-Peng Z., Huai-Zhou Z., Modeling and Simulation For Equipment Support System Based on IDEF Method. International Conforence on Computer Application and System Modeling 2010.
  • 16. Kirikov S. V., Theory and practice of process approach to quality management activities of the organization. Tambovsk National Technical University Publishing, Tambov, 2009.
  • 17. Mayer, R. J., De Witte P. S., Delivering results: Evolving BPR from art to engineering. IDEF: Integrated DEFinition Methods, 2014, Vol. 54.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ba194c7a-6708-4114-87fb-8a707ee846b3
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