A STUDY ON IMPROVING THE ENERGY EFFICIENCY OF CONVEYOR TRANSPORT

Main Article Content

Abdiev, O.Kh.
Yuldashev, E.U.
Kudratova, K.N.
Ergashev, J.B.

Abstract

This study investigates how variations in the transported load affect the operational characteristics of conveyor drive systems. The analysis reveals that when the motor speed is not adjusted according to the actual load, unnecessary energy losses, increased mechanical stresses, and transport instability occur. Practical evaluations demonstrate that applying linear speed control based on the load value significantly reduces energy consumption, mitigates overheating, and improves the reliability of the conveyor system. The findings confirm that adaptive speed control is an effective approach for enhancing the energy efficiency of conveyor transport.

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Article Details

Section

Mining, Metallurgy, and Manufacturing Industry

Author Biographies

Abdiev, O.Kh., Almalyk State Technical Institute

Almalyk State Technical Institute, docent, Almalik, Uzbekistan

Yuldashev, E.U., Almalyk State Technical Institute

Almalyk State Technical Institute, docent, Almalik, Uzbekistan

Kudratova, K.N., Almalyk State Technical Institute

Almalyk State Technical Institute, Master's student, Almalyk, Uzbekistan

Ergashev, J.B., Almalyk State Technical Institute

Almalyk State Technical Institute, Master's student, Almalyk, Uzbekistan

How to Cite

Abdiev, O. K., Yuldashev, E. U., Kudratova, K. N. kizi, & Ergashev, J. B. (2026). A STUDY ON IMPROVING THE ENERGY EFFICIENCY OF CONVEYOR TRANSPORT. Digital Technologies in Industry, 4(1). https://doi.org/10.70769/3030-3214.SRT.4.1.2026.11

References

[1] Ерохин, В. (2017). Электрические приводы промышленных механизмов. Москва: Инфра-Инженерия.

[2] Siemiatkowska, J. (2020). Conveyor belt systems: Design, operation and optimization (pp. 91–94). Springer.

[3] Yuldashev, E. U., & Yuldasheva, M. A. (2024). Performance improvement study by controlling the speed of conveyor transport through sensors. Лучшие интеллектуальные исследования. ISSN: 3030-3680.

[4] Khatamova, D. N., & Yuldashev, E. U. (2024). Mathematical modelling of deposit formation processes on heat-exchange surfaces of piston compressor air coolers. Universum: технические науки, (2(119)), 43–46.

[5] Yuldashev, E. U., Yuldasheva, M. A., Togayev, A. S., Abdullayev, J. N., & Karimov, R. Ch. (2025). Energy efficiency research of conveyor transport. AIP Conference Proceedings, 3331. DOI: https://doi.org/10.1063/5.0305742

[6] Yuldashev, E. U. (2024). Elektr energiyaning sifati asinxron elektr yuritmaning ish samaradorligiga ta’sirini tadqiqoti. Sanoatda raqamli texnologiyalar / Цифровые технологии в промышленности, 168–171. ISSN 3030-3214. DOI: https://doi.org/10.70769/3030-3214.SRT.2.4.2024.53

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