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THE ECONOMY OF THE AGRO-INDUSTRIAL COMPLEX

QUANTITATIVE INDICATORS FOR ASSESSING THE TECHNOLOGICAL ADAPTATION OF TRANSPORT VEHICLES: MODELING OF TRANSPORT PROCESSES IN THE GRAIN-PRODUCT SUBCOMPLEX OF THE AGRO-INDUSTRIAL COMPLEX

Ilyas Мizanbekov 1 , Kabdyrahim Kalym 1 , Larisa Lytkina 2

1 NJSC «Kazakh National Agrarian Research University» ; 2 Voronezh State University of Engineering Technologies

doi.org/10.37884/4-2023/33 pp. 303-310 Admitted 04.07.2023 Published 06.12.2023

Abstract

The grain-product subcomplex of agricultural production is an important link in the agro-industrial complex, and efficient transportation of grain plays a key role in its successful operation. Technological adaptation of transport vehicles is crucial for optimizing transport processes and reducing costs. This article will consider using quantitative indicators to evaluate and optimize transport vehicles' technological adaptation in the agro-industrial complex's grain-product subcomplex. A review of literature, research and publications related to the technological adaptation of transport vehicles and modelling of transport processes in the grain-product subcomplex of the agroindustrial complex was conducted. This made it possible to identify the main methods and indicators used to assess the adaptation and optimization of transport processes. Data on grain transportation in the grain-product subcomplex of the agro-industrial complex were collected, including transportation volumes, distances, fuel costs, the use of transport vehicles and other parameters. These data were used for subsequent analysis and calculation of quantitative indicators. The study's results confirm that using quantitative indicators makes it possible to more accurately assess transport vehicles' technological adaptation in the agro-industrial complex's grain-product subcomplex. Identifying key indicators and taking them into account when choosing transport vehicles and optimizing routes helps to reduce costs and increase productivity and efficiency of transportation. The study of quantitative indicators for assessing the technological adaptation of transport vehicles is an essential contribution to logistics and planning in the grain-product subcomplex of the agro-industrial complex. The results and conclusions of this study can be used to make informed decisions and optimize transport processes in this industry.

transport processes, logistics, grain subcomplex, productivity, cost, cargo transportation, optimization.

01 Introduction

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02 References

  1. 1. Lysenko, O., Oparin, V., Stryzhakova, E., & Dzhakupova, S. (2017). Analysis of grain transportation in the agricultural complex of Kazakhstan. International Journal of Applied Engineering Research, 12(12), 3327-3331.
  2. 2. Mishchenko, A., Lobenko, A., & Lobenko, N. (2018). Optimization of grain transportation logistics in Ukraine. Journal of Eastern European and Central Asian Research, 5(1), 51-62.
  3. 3. Kovalchuk, O., & Kovalchuk, O. (2019). Mathematical modeling of grain transportation in the agricultural complex of Ukraine. Bulletin of Khmelnytskyi National University, 2(5), 219-223.
  4. 4. Djordjevic, Z., & Skocic, M. (2020). Logistics network design for grain transportation in Serbia. Journal of Applied Engineering Science, 18(2), 237-245.
  5. 5. Yegorov, V., Kharchenko, V., & Noskova, T. (2021). Optimization of grain transportation routes in the agricultural complex. IOP Conference Series: Earth and Environmental Science, 721(1), 012055.
  6. 6. Ivanov, A., Pavlov, V., & Zhabin, A. (2022). Efficiency evaluation of grain transportation logistics based on queuing theory. International Journal of Logistics Systems and Management, 37(2), 155-174.
  7. 7. Popov, V., Popova, A., & Mukhamedyanov, R. (2023). Analysis of grain transportation costs in the agricultural sector: A case study in Russia. Journal of Transport Geography, 98, 103386.
  8. 8. Kasimova* R., Mikhov, M., & Adilsheev A. (2021). Indicators of a comprehensive assessment of a combined agricultural machine. Izdenister Natigeler, (4 (92), 87–95. https://doi.org/10.37884/4-2021/10
  9. 9. Bekbosynov* S., Abdildin, N., & Mizanbekov, I. (2021). Improving the technical equipment of agricultural production. Izdenister Natigeler, (2 (90), 217–228. https://doi.org/10.37884/2-2021/21
  10. 10. Tekushev A. Kh., Chaplygin M.E., Chulkov A.S., Shaikhov M.M. Automated technical means in sowing equipment for selection and seed production of agricultural crops // Electrotechnologies and electrical equipment in the agrarian and industrial complex. 2022. Vol. 69. N3(48). pp. 49-55. DOI 10.22314/2658-4859-2022-69-3-49-55. EDN GYNJWX

Citation Links

[1]2023. QUANTITATIVE INDICATORS FOR ASSESSING THE TECHNOLOGICAL ADAPTATION OF TRANSPORT VEHICLES: MODELING OF TRANSPORT PROCESSES IN THE GRAIN-PRODUCT SUBCOMPLEX OF THE AGRO-INDUSTRIAL COMPLEX. Izdenister natigeler. 4 (100) (Dec. 2023), 303–310. DOI:https://doi.org/10.37884/4-2023/33.
(1)QUANTITATIVE INDICATORS FOR ASSESSING THE TECHNOLOGICAL ADAPTATION OF TRANSPORT VEHICLES: MODELING OF TRANSPORT PROCESSES IN THE GRAIN-PRODUCT SUBCOMPLEX OF THE AGRO-INDUSTRIAL COMPLEX. Izdenister natigeler 2023, No. 4 (100), 303-310. https://doi.org/10.37884/4-2023/33.
QUANTITATIVE INDICATORS FOR ASSESSING THE TECHNOLOGICAL ADAPTATION OF TRANSPORT VEHICLES: MODELING OF TRANSPORT PROCESSES IN THE GRAIN-PRODUCT SUBCOMPLEX OF THE AGRO-INDUSTRIAL COMPLEX. (2023). Izdenister Natigeler, 4 (100), 303-310. https://doi.org/10.37884/4-2023/33
QUANTITATIVE INDICATORS FOR ASSESSING THE TECHNOLOGICAL ADAPTATION OF TRANSPORT VEHICLES: MODELING OF TRANSPORT PROCESSES IN THE GRAIN-PRODUCT SUBCOMPLEX OF THE AGRO-INDUSTRIAL COMPLEX. Izdenister natigeler, [S. l.], n. 4 (100), p. 303–310, 2023. DOI: 10.37884/4-2023/33. Disponível em: https://agrosoil.kaznaru.edu.kz/index.php/research/article/view/334. Acesso em: 15 sep. 2026.
“QUANTITATIVE INDICATORS FOR ASSESSING THE TECHNOLOGICAL ADAPTATION OF TRANSPORT VEHICLES: MODELING OF TRANSPORT PROCESSES IN THE GRAIN-PRODUCT SUBCOMPLEX OF THE AGRO-INDUSTRIAL COMPLEX”. 2023. Izdenister Natigeler, no. 4 (100) (December): 303-10. https://doi.org/10.37884/4-2023/33.
“QUANTITATIVE INDICATORS FOR ASSESSING THE TECHNOLOGICAL ADAPTATION OF TRANSPORT VEHICLES: MODELING OF TRANSPORT PROCESSES IN THE GRAIN-PRODUCT SUBCOMPLEX OF THE AGRO-INDUSTRIAL COMPLEX” (2023) Izdenister natigeler, (4 (100), pp. 303–310. doi:10.37884/4-2023/33.
[1]“QUANTITATIVE INDICATORS FOR ASSESSING THE TECHNOLOGICAL ADAPTATION OF TRANSPORT VEHICLES: MODELING OF TRANSPORT PROCESSES IN THE GRAIN-PRODUCT SUBCOMPLEX OF THE AGRO-INDUSTRIAL COMPLEX”, Izdenister natigeler, no. 4 (100), pp. 303–310, Dec. 2023, doi: 10.37884/4-2023/33.
“QUANTITATIVE INDICATORS FOR ASSESSING THE TECHNOLOGICAL ADAPTATION OF TRANSPORT VEHICLES: MODELING OF TRANSPORT PROCESSES IN THE GRAIN-PRODUCT SUBCOMPLEX OF THE AGRO-INDUSTRIAL COMPLEX”. Izdenister Natigeler, no. 4 (100), Dec. 2023, pp. 303-10, https://doi.org/10.37884/4-2023/33.
“QUANTITATIVE INDICATORS FOR ASSESSING THE TECHNOLOGICAL ADAPTATION OF TRANSPORT VEHICLES: MODELING OF TRANSPORT PROCESSES IN THE GRAIN-PRODUCT SUBCOMPLEX OF THE AGRO-INDUSTRIAL COMPLEX”. Izdenister natigeler, no. 4 (100) (December 6, 2023): 303–310. Accessed September 15, 2026. https://agrosoil.kaznaru.edu.kz/index.php/research/article/view/334.
1.QUANTITATIVE INDICATORS FOR ASSESSING THE TECHNOLOGICAL ADAPTATION OF TRANSPORT VEHICLES: MODELING OF TRANSPORT PROCESSES IN THE GRAIN-PRODUCT SUBCOMPLEX OF THE AGRO-INDUSTRIAL COMPLEX. Izdenister natigeler [Internet]. 2023 Dec. 6 [cited 2026 Sep. 15];(4 (100):303-10. Available from: https://agrosoil.kaznaru.edu.kz/index.php/research/article/view/334
1.QUANTITATIVE INDICATORS FOR ASSESSING THE TECHNOLOGICAL ADAPTATION OF TRANSPORT VEHICLES: MODELING OF TRANSPORT PROCESSES IN THE GRAIN-PRODUCT SUBCOMPLEX OF THE AGRO-INDUSTRIAL COMPLEX. Izdenister natigeler. 2023;(4 (100):303-310. doi:10.37884/4-2023/33