Preview

Transport Technician: Education and Practice

Advanced search

Analysis of approaches to determining the throughput capacities of transport infrastructure facilities

https://doi.org/10.46684/2687-1033.2020.4.322-328

Abstract

The subject of the research is the analysis of approaches to determining the bandwidth of transport infrastructure facilities. The bandwidth is influenced by many factors, depending on the technical parameters of the infrastructure. Therefore, in order to obtain reliable data, indicators are taken into account that characterize the interaction of objects and infrastructure in various conditions.
Analytical, marketing, project methods were used; methods of modeling, logistics, visualization, lean manufacturing; materials of general access to the Internet resources of transportation companies and other participants in the transportation process.
A comparison of transport bandwidth is presented. It was revealed that the throughput capacity of devices is focused most of all on the volume of traffic in various spheres of industry and production. All calculation methods are reduced to determining the maximum number of objects that the infrastructure can pass in a unit of time in the considered road transport and weather and climatic conditions. It was found that the existing approaches to determining the bandwidth of transport infrastructure objects take into account many indicators and conditions of interaction between subjects and infrastructure objects in different models of behavior, show how effectively a certain element of the supply chain is functioning, and also identify bottlenecks that impede the smooth operation of the system.

About the Authors

A. B. Volodin
Academy of Water Transport of Russian University of Transport (MIIT)
Russian Federation

Alexey B. Volodin — Cand. Sci. (Eng.), Associate Professor, Director

build. 3, 22 Moscow, Novosuschevskaya st., Moscow, 127055



A. P. Lutay
Russian University of Transport (MIIT)
Russian Federation

Alexey P. Lutay — student

build. 9, 9 Obraztsova st., GSP-4, Moscow, 127994



P. V. Kurenkov
Russian University of Transport (MIIT)
Russian Federation

Petr V. Kurenkov — Dr. Sci. (Econ.), professor

build. 9, 9 Obraztsova st., GSP-4, Moscow, 127994



References

1. Ivankova L.N., Burakova A.V. Determination of carrying capacity of stations taking into account the length of the railway tracks. Modern Technologies. System Analysis. Modeling. 2018; 3(59):92-98. DOI: 10.26731/1813-9108.2018.3(59).92-98 (In Russian).

2. Pokrovskaya O.D. Comprehensive assessment of transport and storage systems of railway transport: dis. ... doctor. tech. sciences. St. Petersburg, 2018; 337. (In Russian).

3. Pokrovskaya O.D., Malikov O.B. Concerning the logistics hierarchy of railway facilities. Proceedings of Petersburg Transport University. 2016; 13(4):(49):521-531. (In Russian).

4. Pokrovskaya O.D., Malykov O.B. Evolutionary functional approach to transport nodes classification. Proceedings of Petersburg Transport University. 2017; 14(3):406-419. (In Russian).

5. Pokrovskaya O.D. The evolutionary-functional approach to the development of transport nodes. Political transport systems: materials of the IX International scientific and technical conference. Novosibirsk, Siberian State University of Railway Engineering, 2017; 233-238. (In Russian).

6. Samuylov V.M., Pokrovskaya O.D., Qiao C. Concept “New Silk Road” (China, Russia, Germany). Innovative Transport. 2017; 4(26):26-28. DOI: 10.20291/2311-164X-2017-4-26-28 (In Russian).

7. Malykov O.B., Pokrovskaya O.D. Rate-setting system analysis of railroad transport from a position of logistics and customer-oriented approach. Proceedings of Petersburg Transport University. 2017; 14(2):187-199. (In Russian).

8. Pokrovskaya O.D., Titova T.S. Research vocabulary of terminalistics. Bulletin of Scientific Research Result. 2018; 2:29-43. (In Russian).

9. Pokrovskaya O., Fedorenko R. Evolutionary-functional approach to transport hubs classification. Advances in Intelligent Systems and Computing. 2020; 356-365. DOI: 10.1007/978-3-030-19756-8_33

10. Pokrovskaya O. Terminalistics as the methodology of integrated assessment of transportation and warehousing systems. MATEC Web of Conferences. 2018; 216:02014. DOI: 10.1051/matecconf/201821602014

11. Pokrovskaya O., Fedorenko R. Assessment of Transport and Storage Systems. VIII International Scientific Siberian Transport Forum. 2020; 570-577. DOI: 10.1007/978-3-030-37916-2_55

12. Polyansky Yu.A., Kurenkov P.V. The road center of situational management: problems of creation and functioning. Economics of Railways. 2003; 1:51-65. (In Russian).

13. Polyansky Yu.A., Kurenkov P.V. Topological modeling of the interaction of railroad farms. Transport: Science, Equipment, Management. 2003; 7:8-17. (In Russian).

14. Bubnova G.V., Zenkin A.A., Kurenkov P.V. Transport corridors and axis in Eurasian communications. Logistics — Eurasian Bridge: Proceedings of the 12th International Scientific and Practical Conference. 2017; 25-33. (In Russian).


Review

For citations:


Volodin A.B., Lutay A.P., Kurenkov P.V. Analysis of approaches to determining the throughput capacities of transport infrastructure facilities. Transport Technician: Education and Practice. 2020;1(4):322-328. (In Russ.) https://doi.org/10.46684/2687-1033.2020.4.322-328

Views: 548


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


ISSN 2687-1025 (Print)
ISSN 2687-1033 (Online)