logo
calendar8 Oktabr 2025
view21
Main language:Uzbek

DEVELOPMENT OF MANAGEMENT MODELS AND ALGORITHMS FOR KNITTED PRODUCTS PRODUCTION PROCESSES

Field of Science:Artificial IntelligenceComputational Theory and MathematicsComputer Graphics and Computer-Aided DesignComputer Networks and CommunicationsInformation SystemsSignal ProcessingSoftware
pdf

39._Omonboyev_A.G_._-_T....pdf

PDF

ARTICLE ANNOTATION

quote
This article studies the theoretical and practical aspects of applying modern management models and algorithms to the production processes of knitted products. The relevance of the research is that in the current conditions, increasing competitiveness, quality and production efficiency in light industry, in particular, in the production of knitted products, is ensured by improving management systems. The research used methods of systematic analysis, modeling, mathematical algorithmization and computer simulation. Based on the conducted studies, three main models of production process management were proposed - planning, monitoring and optimization models. Also, special algorithms were developed for the allocation of production resources, product quality control and increasing production efficiency. Practical results showed that as a result of using the proposed models, the duration of the production cycle is reduced by 15–20%, and the cost of production is reduced by 10–12%. The scientific significance of the article is manifested in the creation of effective control systems by applying a mathematical approach to production processes and their algorithmization. The practical significance lies in the possibility of rational use of resources, increasing production efficiency and ensuring competitiveness by introducing these models in knitting workshops and enterprises.

AUTHORS

A.Omonboyev

ANDIJON DAVLAT TEXNIKA INSTITUTI

Tags

# artificial# intelligence# digital# technologies# process# automation# efficiency# quality# control# models# optimization# algorithms# production# knitted# products# product

SIMILAR ARTICLES

OTHER ARTICLES IN THIS JOURNAL

Rate Article

0
0 ratings
5
4
3
2
1

Article Identifiers

References

1. Oʻzbekiston Respublikasi Prezidenti Sh. M. Mirziyoyev. Yangi Oʻzbekiston taraqqiyot strategiyasi. – Toshkent: Oʻzbekiston, 2022. 2. Oʻzbekiston Respublikasi Prezidenti Sh. M. Mirziyoyev. Oliy Majlisga Murojaatnomasi. – Toshkent, 2023. 3. Азизов С. А. Трикотаж ишлаб чиқариш технологияси. – Тошкент: Фан ва технология, 2019. 4. Шерматов Ш. Ш. Рақамли иқтисодиётда рақамли технологиялар. – Тошкент: Иқтисодiyot, 2021. 5. Ходжанов М. А., Ражабов А. Т. Ишлаб чиқариш жараёнларини бошқариш алгоритмлари. – Тошкент: Фан, 2020. 6. Бегматов А. А. Тўқимачилик ва трикотаж маҳсулотлари ишлаб чиқаришда инновацион технологиялар. – Самарқанд, 2022. – 7. Zelenkov, Y., & Ivanov, V. Optimization models in textile and knitting production. Moscow: Light Industry Publishing, https://link.springer.com/chapter/10.1007/978-3-031-03884-6_15 2020. 8. Lee, K. & Park, J. Smart Manufacturing and AI-based Process Control in Knitting Industry. – Journal of Textile Engineering, 2021, Vol. 67(4), pp. 215–229. https://link.springer.com/book/10.1007/978-3-031-30510-8 9. ISO 9001:2015. Quality management systems — Requirements. International Organization for Standardization. https://www.iso.org/standard/62085.html 10. Oʻzbekiston Respublikasi Innovatsion rivojlanish vazirligi materiallari. Yengil sanoatda raqamli texnologiyalarni joriy etish tajribasi. – Toshkent, 2023. https://scientific-jl.com/obr/article/download/3982/3796/7605

11. Chen, G., Wang, P., Feng, B., Li, Y., & Liu, D. (2020). The framework design of smart factory in discrete manufacturing industry based on cyber-physical system. International Journal of Computer Integrated Manufacturing, 33(1), 79-101. https://www.sciencegate.app/document/10.1080/0951192x.2019.1699254 12. Smith, R. S. H., Bader, C., Sharma, S., Kolb, D., Tang, T. C., Hosny, A., ... & Oxman, N. (2020). Hybrid living materials: digital design and fabrication of 3D multimaterial structures with programmable biohybrid surfaces. Advanced Functional Materials, 30(7), 1907401. https://ahmedhosny.com/files/05_papers/hybrid-living materials-digital-design-fabrication-3D-multimaterial-structures-programmable biohybrid-surfaces.pdf 13. Alam, S., Chowdhury, F. R., Hasan, M. S., Hossain, S., Jakir, T., Hossain, A., ... & Islam, S. N. (2025). Intelligent Streetlight Control System Using Machine Learning Algorithms for Enhanced Energy Optimization in Smart Cities. Journal of Ecohumanism, 4(4), 543-564. https://github.com/proAIrokibul/Intelligent-Streetlight Control-System-using-ML-for-enhanced-energy-optimization-in-cities-25205 14. Karimov, N. A.I. Ministry of higher education, science and innovations of the republic of Uzbekistan. https://gov.uz/en/edu 15. Chen, E. X., Han, X., Malkawi, A., Zhang, R., & Li, N. (2023). Adaptive model predictive control with ensembled multi-time scale deep-learning models for smart control of natural ventilation. Building and Environment, 242, 110519. https://www.x-mol.com/paper/1667798248128757760 16. Buchan, S. A., Seo, C. Y., Johnson, C., Alley, S., Kwong, J. C., Nasreen, S., ... & Wilson, S. E. (2022). Epidemiology of myocarditis and pericarditis following mRNA vaccination by vaccine product, schedule, and interdose interval among adolescents and adults in Ontario, Canada. JAMA network open, 5(6), e2218505 e2218505. https://jamanetwork.com/journals/jamanetworkopen/fullarticle/2793551