CLUSTER APPROACH TO ORGANIZING ADAPTIVE SYSTEM OF CAR MAINTENANCE AND REPAIR
Abstract and keywords
Abstract (English):
The study objective is to develop an adaptive system of maintenance and repair for determining maintenance timing and content, based on a cluster approach, which is planned, preventive, and automatically adapts to increasing reliability, operating conditions reflected in operational modes, the infrastructure of the enterprise, its purpose and characteristics of the transport and technological tasks being solved. tasks. The task to which the paper is devoted is to develop a new approach to vehicle maintenance and repair that characterizes vehicle operating modes and is necessary for an objective assessment of its actual and predicted conditions. Research methods include forecasting, mathematical modeling, statistical analysis, system analysis, reliability theory, probability theory, management theory. The main results and their novelty are the creation of an adaptive system for maintenance and repair of vehicles based on operating modes. Conclusions: An adaptive maintenance and repair system is proposed for determining the maintenance timing and content, based on a cluster approach, which is planned, preventive, but automatically adapts to increasing reliability, operating conditions reflected in the operating modes, the infrastructure of the enterprise, its purpose and characteristics of the transport and technological tasks being solved.

Keywords:
reliability, cars, operation, period, service life
References

1. Kopylova OA. Clusterization of collecting transport and logistics systems. Modern Problems of Russian Transport Complex. 2013;4(4):73-81.

2. Korolev AE. Impact of parameters the design of diesel engines on technical indicators of their operation. Gruzovik. 2023;9:3-5.

3. Kosenko E AIE, Cherpakov AV, Kosenko VV, Nedoluzhko. Methods for assessing the operational reliability of cars. Engineering Journal of Don. 2017;3(46):33.

4. Lyandenbursky VV. Cost coefficient of a dynamic system of car maintenance and routine repair. Transport and Technological Cars. 2015;2(49):19-24.

5. Maksimov VI. Cognitive analysis and situation development management. Proceedings of the I International Conference, 2001: Cognitive Analysis and Situation Development Management (CASC'2001); oscow: IPU RAS. 2001;2:10-21.

6. Matvienko IV. Formation of a complex of measures aimed to ensure the operational reliability of vehicles / I.V. Matvienko // News of Science and Technologies. 2022;2(61):11-18.

7. Semykina AS. Malfunctions of modern cars. The use of computer programs to calculate the technical parameters of the piston. In: International Scientific and Technical Conference of Young Scientists of BSTU named after VG Shukhov; Belgorod: Belgorod State Technological University named after VG Shukhov: 2016. pp. 1751-1756;

8. Semykina AS, Zagorodny NA, Konev AA. Improving the operation efficiency of the transport complex of mining and processing plants. Transport and Technological Cars. 2018;1(60):134-139.

9. Syskov VV, Borisov VV. Approach to building an intelligent process management system to ensure effective collective activity. Management in Economic Systems: Electronic Scientific Journal. 2015;11(83):3.

10. Syskov VV, Borisov VV. Setting the task of process management in complex organizational and technical systems. Izvestiya of Smolensk State University. 2015;2/1:301.

11. Terentyev AV, BelyaevAI. On the problem of developing a vehicle lifecycle management system. Transport of the Russian Federation. 2015;5(60):30-32.

12. Terentyev, AV, Prudovsky BD. Method of operational analysis of the technical condition of the car. Journal of Mining Institute. 2014;209:197-199.

13. Terentyev AV. Scientific and methodological approach to the multi-criteria assessment of the car life [dissertation]. [Saint Petersburg (RF)]: Saint Petersburg State University of Architecture and Civil Engineering; 2019.

14. Shaterinkov MV, Korchagin VA, Shaternikov VS. Improving the reliability and durability of YaMZ-240N engine. Avtotransportnoe Predpriyatie. 2014;7:41-45.

15. Yakunin NN. Methodological foundations of control and management of the technical condition of vehicles in operation [dissertation]. [Orenburg (RF)]: Orenburg State University; 2004.

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