AVTOMATLASHTIRILGAN VA INSON TOMONIDAN BOSHQARILADIGAN ELEKTROMOBILLARDA REGENERATIV TORMOZLASH SAMARADORLIGINI TAQQOSLASH BO‘YICHA TADQIQOT, AKKUMULYATORNING YEMIRILISHINI MINIMALLASHTIRISH MAQSADIDA

Mualliflar

  • Tojiboy Almataev
  • Azizbek Zokirjonov

Kalit so'zlar

https://doi.org/10.47390/issn3030-3702v3i3y2025N09

Kalit so'zlar

Elektromobillar, lityum-ion batareya, regenerativ tormozlash tizimi, yemirilish, sog‘lik holati

Annotasiya

So‘nggi yillarda lityum-ionli akkumulyatorlar elektromobillar va gibrid elektromobillar uchun muhim komponentga aylangan bo‘lsa-da, ularning eskirishi akkumulyatorning ishlash muddati, ishonchliligi, xavfsizligi va umumiy samaradorligiga salbiy ta’sir ko‘rsatmoqda. Akkumulyatorning asl texnik holatini aniqlash uchun uning eskirish darajasini to‘g‘ri baholash va miqdoriy ifodalash muhim hisoblanadi. Elektromobillarning asosiy qismlaridan biri bo‘lgan regenerativ tormozlash tizimi harakat vaqtida kinetik energiyani saqlab qolib, uni batareyalarda saqlanadigan elektr energiyasiga aylantirib, avtomobilning energiya samaradorligini oshiradi va yurish masofasini uzaytiradi. Ushbu taqqoslov tadqiqotda avtomatlashtirilgan va inson tomonidan boshqariladigan elektromobillarda regenerativ tormozlash samaradorligi o‘rganilib, akkumulyator eskirishini kamaytirish imkoniyatlari va akkumulyator sog‘lig‘ining holati baholandi.

Manbalar

1. Rietmann, N., Hügler, B., Lieven, T. “Forecasting the Trajectory of Electric Vehicle Sales and the Consequences for Worldwide CO2 Emissions”. J. Clean. Prod. 2020, 261, 121038.

2. Shell Eco-Marathon. Shell Eco-Marathon 2023 Official Rules Chapter 1. 2023. Available online: https://www.makethefuture.shell/en-gb/shell-ecomarathon/glo-bal-rules

3. Sciarretta, A., De Nunzio, G., Ojeda, L.L. “Optimal Eco-driving Control: Energy-Efficient Driving of Road Vehicles as an Optimal Control Problem”. IEEE Control. Syst. 2015, 35. Pages: 71–90.

4. Sawulski, J., Ławry´nczuk, M. “Optimization of control strategy for a low fuel consumption vehicle engine”. Inf. Sci. 2019, 493. Pages: 192–216.

5. Stabile, P., Ballo, F., Previati, G., Mastinu, G., Gobbi, M. “Eco-Driving Strategy Implementation for Ultra-Efficient Lightweight Electric Vehicles in Realistic Driving Scenarios”. Energies 2023, 16, 1394.

6. Chen, Z., Zhou, X., Wang, Z., Li, Y., Hu, B. “A Novel Emergency Braking Control Strategy for Dual-Motor Electric Drive Tracked Vehicles Based on Regenerative Braking”. Appl. Sci. 2019, 9, 2480.

7. Martyushev, N.V., Malozyomov, B.V., Khalikov, I.H., Kukartsev, V.A., Kukartsev, V.V.; Tynchenko, V.S., Tynchenko, Y.A., Qi, M. “Review of Methods for Improving the Energy Efficiency of Electrified Ground Transport by Optimizing Battery Consumption”. Energies 2023, 16, Page: 729.

8. Xu, W., Chen, H., Zhao, H., Ren, B. “Torque Optimization Control for Electric Vehicles with Four In-Wheel Motors Equipped with Regenerative Braking System. Mechatronics” 2019, 57. Pages: 95–108.

9. Pusztai, Z.; Korös, P., Szauter, F., Friedler, F. “Regenerative Braking Optimization of Lightweight Vehicle Based on Vehicle Model”. Chem. Eng. Trans. 2022, 94. Pages: 601–606.

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Yuborilgan

2025-06-19

Nashr qilingan

2025-06-20

Qanday ko'rsatish

Almataev, T., & Zokirjonov , A. (2025). AVTOMATLASHTIRILGAN VA INSON TOMONIDAN BOSHQARILADIGAN ELEKTROMOBILLARDA REGENERATIV TORMOZLASH SAMARADORLIGINI TAQQOSLASH BO‘YICHA TADQIQOT, AKKUMULYATORNING YEMIRILISHINI MINIMALLASHTIRISH MAQSADIDA. Techscience Uz - Topical Issues of Technical Sciences, 3(3), 65–76. https://doi.org/10.47390/issn3030-3702v3i3y2025N09

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