ANALYSIS AND MODELLING OF DESIGN PROCESSES FOR RAILWAY AUTOMATIC EQUIPMENT AND REMOTE CONTROL SYSTEMS
Abstract and keywords
Abstract (English):
The article researches the process of designing railway station automation and remote control. The present paper sets out the hierarchical structure of design documentation for linear facilities. In particular, it focuses on the section devoted to automation and remote control systems within the general structure of the project. The process of design documentation development for station systems was formalized using BPMN-diagrams, a methodology of business processes. This approach enabled the visualization of the sequence and logic of stages execution, as well as the participants of the design process. The analysis of the factors directly influencing the design time allows for the proposal of their classification, including four main groups. It is proposed that a mathematical model of the target function of the design time be developed, based on the existing standards of labour costs for the development of electrical interlocking projects and the analysis of the identified factors. An expert evaluation of the various factors and their influence has been conducted and the potential for further research has been determined by the application of simulation modelling methodology. In the future, this approach will make it possible to increase the efficiency of the process of technical documentation development, reduce the time of work execution, as well as create additional opportunities for analysis and optimization of the design processes of automation and remote control systems on railways.

Keywords:
design of automation and remote control systems on railways; technical documentation; target function of design time; BPMN business process diagram; design time
Text
Text (PDF): Read Download
References

1. Vasilenko M. N. Perspektivy razvitiya intellektual'nogo elektronnogo dokumentooborota hozyaystva zheleznodorozhnoy avtomatiki i telemehaniki / M. N. Vasilenko, V. P. Bubnov, D. V. Zuev i dr. // Avtomatika na transporte. — 2018. — T. 4. — № 1. — S. 46–65.

2. Vasilenko M. N. K voprosu cifrovizacii vedeniya tehnicheskoy dokumentacii / M. N. Vasilenko, V. G. Trohov, P. A. Vasilenko, V. P. Pronin // Zheleznodorozhnyy transport. — 2020. — № 10. — S. 56–62.

3. Vasilenko M. N. Razrabotka i vnedrenie sredstv avtomatizirovannogo proektirovaniya sistem zheleznodorozhnoy avtomatiki i telemehaniki / M. N. Vasilenko, M. A. Gordon, D. V. Zuev, D. V. Sedyh // Avtomatika na transporte. — 2017. — T. 3. — № 2. — S. 250–269.

4. Robinson N. Automatic Generation and Verification of Design Specifications for Railway Signalling Applications / N. Robinson, P. Kearney, D. Tombs, D. Barney et al. // INCOSE International Symposium. — 2001. — Vol. 11. — Pp. 176– 182. — DOI:https://doi.org/10.1002/j.2334-5837.2001.tb02290.x

5. Gordon M. A. Tehnologii informacionnogo modelirovaniya pri proektirovanii SCB / M. A. Gordon, E. V. Demidov // Avtomatika, svyaz', informatika. — 2021. — № 9. — S. 18–20. — DOI:https://doi.org/10.34649/AT.2021.9.9.001.

6. Gordon M. A. Sintez programm polnoy funkcional'noy proverki sistem upravleniya dvizheniya poezdov na zheleznodorozhnoy stancii / M. A. Gordon, P. A. Vasilenko, D. V. Sedyh // Novye informacionnye tehnologii v issledovanii slozhnyh struktur: materialy Trinadcatoy Mezhdunarodnoy konferencii, Tomsk, 7–9 sentyabrya 2020 goda / Tomskiy gosudarstvennyy universitet. — Tomsk: Nacional'nyy issledovatel'skiy Tomskiy gosudarstvennyy universitet, 2020. — S. 13–15.

7. Vasilenko M. N. Principy postroeniya i oblasti primeneniya yazyka opisaniya putevyh ob'ektov ZhAT / M. N. Vasilenko, T. A. Telezhenko, P. A. Vasilenko // Avtomatika, svyaz', informatika. — 2020. — № 5. — S. 25–31. — DOI:https://doi.org/10.34649/AT.2020.5.5.005.

8. Vasilenko M. N. Sintez funkciy bezopasnosti sistem EC na baze yazyka putevyh ob'ektov / M. N. Vasilenko, P. A. Vasilenko // Avtomatika, svyaz', informatika. — 2021. — № 5. — S. 22–25. — DOI:https://doi.org/10.34649/AT.2021.5.5.003.

9. Luteberget B. Efficient verification of railway infrastructure designs against standard regulations / B. Luteberget, C. Johansen // Formal Methods in System Design. — 2018. — Vol. 52(3). — Pp. 1–32. — DOI:https://doi.org/10.1007/s10703- 017-0281-z.

10. Vasilenko M. N. Oshibki v tehnicheskoy dokumentacii zheleznodorozhnoy avtomatiki i telemehaniki i ih vliyanie na bezopasnost' dvizheniya poezdov / M. N. Vasilenko, V. P. Bubnov, P. E. Bulavskiy, P. A. Vasilenko // Avtomatika na transporte. — 2019. — T. 5. — № 1. — S. 94–112. — DOI:https://doi.org/10.20295/2412-9186-2019-1-94-112.

11. Bulavskiy P. E. Ocenka kachestva tehnicheskoy dokumentacii na sistemy ZhAT / P. E. Bulavskiy // Avtomatika, svyaz', informatika. — 2011. — № 8. — S. 37–39.

12. Vasilenko M. N. Kiberbezopasnost' tehnicheskoy dokumentacii ZhAT / M. N. Vasilenko, D. V. Zuev // Avtomatika, svyaz', informatika. — 2015. — № 7. — S. 21–23.

13. Chinosi M. BPMN: An introduction to the standard, Computer Stan ards & Interfaces / M. Chinosi, A. Trombetta // Computer Standards & Interfaces. — 2012. — Vol. 34. — Iss. 1 — Pp. 124–134. — DOI:https://doi.org/10.1016/j.csi.2011.06.002.

14. Alves F. BPMN and Petri Nets: A Case Study of Process Optimization in a Project Engineering Company / F. Alves, R. D. Merlim, L. M. Carvalho, F. H. B. de Souza // Conference: 7th International Conference on Applied Research in Management, Economics and Accounting. — Dublin, November 2023. — DOI:https://doi.org/10.33422/7th.iarmea.2023.07.124.

15. Business Process Re-Engineering using BPMN: A Case Study // International Journal of Business Management and Visuals. — 2024. — Vol. 7(1). — Pp. 49–55. — URL: https://ijbmv.com/index.php/home/article/view/92.

16. Ivanova L. N. Ekspertnye ocenki v prinyatii upravlencheskih resheniy / L. N. Ivanova, V. D. Lugovskoy // Sovremennye nauchnye issledovaniya i innovacii. — 2020. — № 10(114). — S. 7.

Login or Create
* Forgot password?