Russian Federation
Moscow, Russian Federation
Russian Federation
Moscow, Russian Federation
UDK 004.942 Исследование поведения объекта на основе его математической модели
UDK 656.223.18 вагонов частного пользования (ведомственной принадлежности)
The article analyses the technological process of transportation process organization and its control in different systems of urban agglomeration rapid-transit transport. It is presented the generalization of organization technological schemes of transportation process at the compilation of normative documents-schedules of: train traffic, rolling stock turnover, work of locomotive teams. Common features, allowing to share automation and digitization positive experience from one transport systems to another, are revealed. As a typical example for urban agglomeration rapid-transit transport, the work of Moscow Central Ring in data flow diagram notation is considered. It has been shown that the conditions of traffic planning on Moscow Central Ring are analogous to active ones on the subway ring lines. As generalizing notions, there are: mixing, non-parallelism, zoning, non-autonomy. Corresponding illustrative examples are given. Congested experience in the sphere of control automation for transportation process of rapid-transit transport of urban agglomeration is considered on the examples of railway section Nizhniy Novgorod – Uren’ as well as Kaluzhsko-Rizhskaya line of Moscow subway (electrodepots “Kaluzhskoye” and “Sviblovo”). The article describes initial data sets for to perform train traffic schedule, the purpose of its performance has been formulated, limitations, reflecting the links between objects, inside the set of given resources, and limitations, being defined by rules of passenger service, have been revealed. Analysis, pursued in the article, has shown the perspective directions of automated transport systems development on knowledge accumulated bases. As a result of the application of complex approach to the solution of automated control tasks at the use of artificial intelligence technologies and big databases usage, it’s planned to increase the efficiency usage for given resources set, train traffic schedule implementation percentage and others; to reduce information transfer error number as well as those, appeared as a result of negative human factor influence and so on.
rapid-transit transport, urban agglomeration, train traffic schedule, turnout schedule, work schedule of locomotive teams, operative control, personnel training, database, exerciser, knowledge database
1. Baranov L. A. Kompleksnoe reshenie zadach planirovaniya i upravleniya dvizheniem gorodskih rel'sovyh transportnyh sredstv / L. A. Baranov, V. G. Sidorenko, E. P. Balakina i dr. // Akademik Vladimir Nikolaevich Obrazcov - osnovopolozhnik transportnoy nauki: trudy Mezhdunarodnoy nauchno-prakticheskoy konferencii, posvyaschennoy 125-letiyu universiteta, Moskva, 22 oktyabrya 2021 goda. - M.: RUT (MIIT), 2021. - S. 56-64.
2. Vakulenko S. P. Razrabotka variantov modernizacii Moskovskoy monorel'sovoy transportnoy sistemy / S. P. Vakulenko, D. Yu. Romenskiy, V. A. Mnacakanov i dr. // Metro i tonneli. - 2020. - № 4. - S. 28-36.
3. Shevlyugin M. V. Electric stock digital twin in a subway traction power system / M. V. Shevlyugin, A. A. Korolev, A. E. Golitsyna et al. // Russian Electrical Engineering. - 2019. - Vol. 90. - Iss. 9. - Pp. 647-652. - DOI:https://doi.org/10.3103/S1068371219090098.
4. Zhou W. Passenger Flow Forecasting in Metro Transfer Station Based on the Combination of Singular Spectrum Analysis and AdaBoost-Weighted Extreme Learning Machine / W. Zhou, W. Wang, D. Zhao // Sensors. - 2020. - Vol. 20. - Iss. 12. - Pp. 1-23. - DOI:https://doi.org/10.3390/s20123555.
5. Pazoyskiy Yu. O. Vybor optimal'nyh parametrov sistemy osvoeniya passazhiropotokov v dal'nem soobschenii na zheleznodorozhnom transporte / Yu. O. Pazoyskiy, O. N. Panova // Avtomatizaciya i sovremennye tehnologii. - 2008. - № 1. - S. 34-39.
6. Pazoyskiy Yu. O. Maksimizaciya chisla passazhirskih poezdov dal'nego sledovaniya v period rosta passazhiropotokov za schet intensifikacii ispol'zovaniya sostavov poezdov / Yu. O. Pazoyskiy, M. Yu. Savel'ev, A. P. Baturin // Konkurentosposobnost' v global'nom mire: ekonomika, nauka, tehnologii. - 2016. - № 9-1(23). - S. 166-171.
7. Pazoyskiy Yu. O. Shematicheskiy grafik dvizheniya prigorodnyh poezdov po vyhodnym dnyam / Yu. O. Pazoyskiy, M. Yu. Savel'ev // Mir transporta. - 2017. - T. 15. - № 6(73). - S. 140-147.
8. Iskakov T. A. Podhody k ocenke kachestva planirovaniya i upravleniya dvizheniem passazhirskih poezdov metropolitena / T. A. Iskakov, A. I. Safronov, V. G. Sidorenko i dr. // Avtomatika na transporte. - 2020. - T. 6. - № 1. - S. 38-63. - DOI:https://doi.org/10.20295/2412-9186-2020-6-1-38-63.
9. Safronov A. I. Antologiya zadach organizacii graficheskogo pol'zovatel'skogo interfeysa v intellektual'noy sisteme «ARM grafista» / A. I. Safronov, U. A. Starovoytova // Intellektual'nye transportnye sistemy: materialy Mezhdunarodnoy nauchno-prakticheskoy konferencii. - M.: RUT (MIIT), 2022. - S. 326-337.
10. Kopylova E. V. Tehnologiya organizacii prigorodnogo passazhiropotoka / E. V. Kopylova, P. A. Kozlov, O. V. Osokin // Vestnik Rostovskogo gosudarstvennogo universiteta putey soobscheniya. - 2019. - № 3. - S. 109-117.
11. Iskakov T. A. Model' povedeniya razlichnyh klientskih grupp v sisteme upravleniya transportnogo uzla / T. A. Iskakov // Nauka i tehnika transporta. - 2016. - № 3. - S. 79-89.
12. Abdul Ghani N. An Alternative Algorithm for Vehicle Routing Problem with Time Windows for Daily Deliveries / N. Abdul Ghani, S. Shariff, S. Zahari // Advances in Pure Mathematics. - 2016. - Iss. 6. - Pp. 342-350. - DOI:https://doi.org/10.4236/apm.2016.65025.
13. Vakulenko S. P. Ocenka celesoobraznosti formirovaniya logisticheskih sistem obsluzhivaniya passazhirov / S. P. Vakulenko, E. V. Kopylova, A. Yu. Belyankin // Mir transporta. - 2015. - T. 13. - № 2(57). - S. 122-128.
14. Kopylova E. V. Metodicheskie podhody k ocenke vliyaniya trebovaniy passazhirov k kachestvu transportnogo obsluzhivaniya na tehnologiyu raboty zheleznodorozhnogo transporta / E. V. Kopylova, M. A. Tumanov // Transportnoe delo Rossii. - 2018. - № 4. - S. 178-181.
15. Kopylova E. V. Nauchnye podhody k obespecheniyu kachestva obsluzhivaniya passazhirov pri organizacii mul'timodal'nyh passazhirskih perevozok / E. V. Kopylova, S. P. Vakulenko // Zheleznodorozhnyy transport. - 2018. - № 6. - S. 21-26.
16. Romenskiy D. Yu. Postanovka zadachi vybora mest raspolozheniya i emkosti putey otstoya sostavov prigorodnyh i prigorodno-gorodskih elektropoezdov / D. Yu. Romenskiy // Nauka i tehnika transporta. - 2020. - T. 1. - S. 60-65.
17. Ho T. K. Train service timetabling in railway open markets by particle swarm optimization / T. K. Ho, C. W. Tsang, K. H. Ip et al. // Expert System Applications. - 2012. - Vol. 39. - Pp. 861-868.
18. Bykov V. P. Teoreticheskie i metodologicheskie osnovy postroeniya sistem podderzhki prinyatiya resheniy pri upravlenii dvizheniem poezdov na uchastkah zheleznyh dorog / V. P. Bykov. - Habarovsk: DVGUPS, 1999. - 135 s.
19. Kazakov A. L. Primenenie ontologicheskogo podhoda dlya sozdaniya intellektual'noy sistemy upravleniya na zheleznodorozhnom transporte / A. L. Kazakov, A. V. Dudakova // Vestnik Ural'skogo gosudarstvennogo universiteta putey soobscheniya. - 2019. - № 3(43). - S. 33-41. - DOI:https://doi.org/10.20291/2079-0392-2019-3-33-41.
20. Baranov L. A. Postroenie na EVM grafikov dvizheniya poezdov metropolitena / L. A. Baranov, A. I. Zherbina // Vestnik VNIIZhTa. - 1981. - № 2. - S. 17-20.
21. Vasilenko M. N. Avtomaticheskoe postroenie grafikov dvizheniya poezdov na metropolitene / M. N. Vasilenko, D. P. Degtyarev, O. A. Maksimenko // Trudy Mezhdunarodnoy konferencii «Transport XXI vek». - Varshava, 2001.
22. Loginova L. N. Razrabotka analiticheskogo algoritma sostavleniya raspisaniya dvizheniya poezdov metropolitena / L. N. Loginova, E. A. Seslavina, A. I. Seslavin // Intellektual'nye transportnye sistemy: materialy Mezhdunarodnoy nauchno-prakticheskoy konferencii, Moskva, 26 maya 2022 goda. - Moskva: Rossiyskiy universitet transporta, 2022. - S. 221-225.
23. Loginova L. N. Matematicheskie metody i osnovnye principy organizacii transportnyh perevozok / L. N. Loginova, E. A. Seslavina, A. I. Seslavin // Transportnoe delo Rossii. - 2021. - № 4. - S. 84-87.
24. Feofilov A. N. Matematicheskaya model' sostavleniya grafikov dvizheniya poezdov na liniyah metropolitena / A. N. Feofilov // Vestnik VNIIZhT. - 1991. - № 7. - S. 10-13.
25. Chaudhry I. A. Integrated process planning and scheduling using genetic algorithms / I. A. Chaudhry, M. Usman // Tehnicki Vjesnik. - 2017. - Iss. 24(5). - Pp. 1401-1409. - DOI:https://doi.org/10.17559/TV-20151121212910.
26. Chavhan S. Prediction based traffic management in a metropolitan area / S. Chavhan, P. Venkataram // Journal of traffic and transportation engineering. - 2020. - Vol. 7. - Iss. 4. - Pp. 447-466. - DOI:https://doi.org/10.1016/j.jtte.2018.05.003.
27. Aguado J. A. Optimal Operation of Electric Railways with Renewable Energy and Electric Storage Systems / J. A. Aguado, A. J. Sanchez-Racero, S. De la Torre // IEEE Transactions on Smart Grid. - 2018. - Vol. 9. - Iss. 2. - Pp. 993-1001. - DOI:https://doi.org/10.1109/TSG.2016.2574200.
28. Liu R. A robust and energy-efficient train timetable for the subway system / R. Liu, M. Schmidt, Q. Kong et al. // Transportation Research Part C: Emerging Technologies. - 2020. - Vol. 121(2). - Pp. 102822-102849. - DOI:https://doi.org/10.1016/j.trc.2020.102822.
29. Wang P. Multi-train trajectory optimization for energy-efficient timetabling / P. Wang, R. M. Goverde // European Journal of Operational Research. - 2019. - Vol. 272. - Pp. 621-635. - DOI:https://doi.org/10.1016/j.ejor.2018.06.034.
30. Haładyn S. The Problem of Train Scheduling in the Context of the Load on the Power Supply Infrastructure. A Case Study / S. Haładyn // Energies. - 2021. - Iss. 14(16). - Pp. 8248-8260. - DOI:https://doi.org/10.3390/en14164781.
31. Baranov L. A. Minimization of Energy Consumption for Urban Rapid-Transit Traction / L. A. Baranov, V. G. Sidorenko, E. P. Balakina et al. // Russian Electrical Engineering. - 2021. - Vol. 92. - Iss. 9. - Pp. 492-498. - DOI:https://doi.org/10.3103/S1068371221090030.
32. Nikolaev K. Yu. Primenenie tehnologii «tramvay - poezd» v Rossii. Trebovaniya k podvizhnomu sostavu i tehnologicheskoe obespechenie vzaimodeystviya transportnyh sistem / K. Yu. Nikolaev // Nauka 1520 VNIIZhT: Zaglyani za gorizont: sbornik materialov nauchno-prakticheskoy konferencii AO «VNIIZhT», Scherbinka, 26-27 avgusta 2021 goda. - Scherbinka: AO «VNIIZhT», 2021. - S. 132-138.
33. Pazoyskiy Yu. O. Avtomatizaciya rascheta grafika raboty poezdnyh brigad v prigorodnom soobschenii / Yu. O. Pazoyskiy, S. A. Byvshev; pod obsch. red. F. P. Kochneva // Mezhvuzovskiy sbornik nauchnyh trudov «Optimizaciya ekspluatacionnoy raboty zheleznyh dorog». - 1981. - № 657. - S. 84-90.
34. Pazoyskiy Yu. O. Organizaciya prigorodnyh zheleznodorozhnyh perevozok: Transportnye sredstva. Ekspluataciya zheleznyh dorog / Yu. O. Pazoyskiy, S. P. Vakulenko, A. V. Kolin. - M.: FGBU DPO «Uchebno-metodicheskiy centr po obrazovaniyu na zheleznodorozhnom transporte», 2015. - 270 s.
35. Kopylova E. V. Optimizaciya oborota sostavov po obespecheniyu nitok grafika prigorodnogo dvizheniya / E. V. Kopylova, P. A. Kozlov // Nauka i tehnika transporta. - 2020. - № 2. - S. 68-73.
36. Kozlov P. A. Svidetel'stvo o gosudarstvennoy registracii programmy dlya EVM № 2015663049 Rossiyskaya Federaciya. Sistema optimal'nogo upravleniya oborotom poezdnyh lokomotivov «Labirint»: № 2015619810: zayavl. 15.10.2015: opubl. 09.12.2015 / P. A. Kozlov, I. V. Ivanov, A. A. Kalyaganov; zayavitel' obschestvo s ogranichennoy otvetstvennost'yu «Analiticheskie i upravlyayuschie sistemy na transporte “Transportnyy algoritm”».
37. Zherbina A. I. Raschet na EVM grafika oborota sostavov metropolitena / A. I. Zherbina // Mezhvuzovskiy sbornik. - 1980. - № 612. - S. 105-109.
38. Guler H. Optimisation of railway track maintenance and renewal works by genetic algorithms / H. Guler // Gradevinar. - 2016. - Vol. 68. - Iss. 12. - Pp. 979-993. - DOI:https://doi.org/10.14256/JCE.1458.2015.
39. Ghofrani, F. Recent applications of big data analytics in railway transportation systems: A survey / F. Ghofrani, Q. He, R. Goverde et al. // Transportation Research Part C Emerging Technologies. - 2018. - Iss. 90. - Pp. 226-246. - DOI:https://doi.org/10.1016/j.trc.2018.03.010.
40. Reva O. Ergonomic assessment of instructors capability to conduct personality-oriented training for air traffic control (ATS) personnel / O. Reva, S. Borsuk, V. Shulgin et al. // Advances in Intelligent Systems and Computing. - 2020. - Vol. 964. - Pp. 783-793. - DOI:https://doi.org/10.1007/978-3-030-20503-470/.
41. Barhatnyy V. D. Racional'noe ispol'zovanie tehnicheskih sredstv i personala v usloviyah vnutrisutochnoy neravnomernosti i spada perevozok / V. D. Barhatnyy, Yu. S. Generalov, D. V. Smirnov // Bestnik VNIIZhT. - 1997. - № 4. - S. 3-7.
42. Luteberget B. Design-Time Railway Capacity Verification using SAT modulo Discrete Event Simulation / B. Luteberget, K. Claessen, C. Johansen // Proceedings of the 2018 18th conference on formal methods in computer aided design (FMCAD). - Austin, 2019. - Pp. 188-196. - DOI:https://doi.org/10.23919/FMCAD.2018.8603003.
43. Gan T. H. Industry 4.0: Why Machine Learning Matters? / T. H. Gan, J. Kanfoud, H. Nedunuri et al. // Advances in Condition Monitoring and Structural Health Monitoring. - 2021. - Pp. 397-404. - DOI:https://doi.org/10.1007/978-981-15-9199-0_37.
44. Pappaterra M. J. A Systematic Review of Artificial Intelligence Public Datasets for Railway Applications / M. J. Pappaterra, F. Flammini, V. Vittorini et al. // Infrastructures. - 2021. - Vol. 6. - Iss. 10. - Pp. 136. - DOI:https://doi.org/10.3390/infrastructures6100136.
45. Chumakov V. M. Avtomatizaciya processa analiza grafika ispolnennogo dvizheniya poezdov i kachestva poezdnoy raboty v centre upravleniya perevozkami / V. M. Chumakov, O. V. Mlyavaya // Tihomirovskie chteniya: Sinergiya tehnologii perevozochnogo processa: materialy Mezhdunarodnoy nauchno-prakticheskoy konferencii, Gomel', 10-11 dekabrya 2020 goda. Pod obsch. red. A. A. Erofeeva. - Gomel': uchrezhdenie obrazovaniya «Belorusskiy gosudarstvennyy universitet transporta», 2021. - S. 413-417.
46. Bariev M. F. Vzaimodeystvie informacionnyh sistem v monitoringe grafika dvizheniya poezdov na MCD / M. F. Bariev, R. A. Vorotnyak // Avtomatika, svyaz', informatika. - 2020. - № 12. - S. 12-13. - DOI:https://doi.org/10.34649/AT.2020.12.12.003.
47. Baranov L. A. Integracionnyy podhod v obuchenii operativnyh rabotnikov gorodskih rel'sovyh transportnyh sistem / L. A. Baranov, V. G. Sidorenko, E. P. Balakina i dr. // Nauka i tehnika transporta. - 2021. - № 2. - S. 22-31.
48. Pokusaev O. On Digital Twin for Metro System / O. Pokusaev, A. Checkmarev, D. Namiot // Proceedings of 19th IEEE EastWest Design & Test Symposium (EWDTS’2021). September 10-13, 2021. - Batumi, 2021. - Pp. 114-118. - DOI:https://doi.org/10.1109/EWDTS52692.2021.9581028.
49. Wang X. Digital twin Based Validation Platform for Smart Metro Scenarios / X. Wang, H. Song, W. Zha et al. // 2021 IEEE 1st International Conference on Digital Twins and Parallel Intelligence (DTPI). - 15 July - 15 Aug. 2021. - Beijing, 2021. - Pp. 386-389. - DOI:https://doi.org/10.1109/DTPI52967.2021.9540161.
50. Bao L. Review of digital twin for intelligent transportation system / L. Bao, Q. Wang, Y. Jiang // International Conference on Information Control, Electrical Engineering and Rail Transit (ICEERT). - 2021. - Pp. 309-315. - DOI:https://doi.org/10.1109/ICEERT53919.2021.00064.
51. Ali W. A. Digital Twin in Intelligent Transportation Systems: a Review / W. A. Ali, M. Roccotelli, M. P. Fanti // Conference: 2022 8th International Conference on Control, Decision and Information Technologies (CoDIT). - Istanbul, 2022. - DOI:https://doi.org/10.1109/CoDIT55151.2022.9804017.
52. Gapanovich V. A. Patent na poleznuyu model' № 130113 U1 Rossiyskaya Federaciya, MPK G09B 9/05. Mobil'nyy uchebnyy demonstracionnyy kompleks: № 2012126762/11: zayavl. 27.06.2012: opubl. 10.07.2013 / V. A. Gapanovich, Yu. I. Popov, V. V. Vlasov i dr.; zayavitel' otkrytoe akcionernoe obschestvo «Rossiyskie zheleznye dorogi».
53. Kozlov P. A. Intellektual'nyy trenazher dlya professional'noy podgotovki dispetcherov / P. A. Kozlov, V. A. Chetverikov, I. M. Yarikov // Zheleznodorozhnyy transport. - 2011. - № 10. - S. 29-32.
54. Kozlov P. A. Intellektual'nyy trenazher dlya dispetcherov / P. A. Kozlov, O. V. Osokin, N. A. Tushin // Mir transporta. - 2012. - T. 10. - № 3(41). - S. 180-183.
55. Zelencov L. B. Primenenie simulyatora-trenazhera pri podgotovke i perepodgotovke specialistov v sfere upravleniya investicionno-stroitel'nymi proektami / L. B. Zelencov, D. V. Pirko, I. A. Alaameri i dr. // Stroitel'noe proizvodstvo. - 2022. - № 1. - S. 50-54. - DOI:https://doi.org/10.54950/26585340_2022_1_50.
56. Velikanov V. S. Trenazhernaya podgotovka kadrov dlya gornoy promyshlennosti kak sistemoobrazuyuschiy faktor v sfere obespecheniya effektivnoy ekspluatacii gornogo oborudovaniya / V. S. Velikanov, K. V. Ismagilov, A. A. Shabanov // Gornyy informacionno-analiticheskiy byulleten' (nauchno-tehnicheskiy zhurnal). - 2012. - № S2. - S. 153-158.
57. Gabdullin T. R. Razrabotka obuchayuschih trenazherov dlya dorozhno-stroitel'nyh mashin / T. R. Gabdullin // Tehnika i tehnologiya transporta. - 2018. - № 4(9). - S. 2.