SELECTING THE CORRECT BATTERY CAPACITY FOR HYBRID VEHICLES

Authors

  • Yoqubov Oybek Zafarjon oʻgʻli
  • Ravshan Khikmatov

Keywords:

Keywords: hybrid vehicles, battery capacity, performance optimization, efficiency, driving patterns, cost considerations, decision-making.

Abstract

Abstract: As hybrid vehicles gain prominence in the automotive market, the selection of appropriate battery capacity becomes crucial for optimizing performance and achieving desired efficiency. This article explores the factors influencing the choice of battery capacity for hybrid vehicles, considering aspects such as vehicle size, driving patterns, and cost considerations. By analyzing these factors, manufacturers and consumers can make informed decisions to match battery capacity with the vehicle's intended usage, thereby enhancing overall efficiency and driving experience. This article aims to provide insights into the complex decision-making process involved in selecting the correct battery capacity for hybrid vehicles.

References

Ahn, J., Choi, W., Lee, J., & Kim, J. (2020). Optimal Design of Battery Capacity for Electric Vehicles Considering Driving Patterns. Energies, 13(3), 550.

Ehsani, M., Gao, Y., & Emadi, A. (2018). Modern Electric, Hybrid Electric, and Fuel Cell Vehicles: Fundamentals, Theory, and Design (2nd ed.). CRC Press.

Lee, J., Youn, B. D., & Lee, J. H. (2018). Battery Sizing for Plug-in Hybrid Electric Vehicles Based on Driving Patterns. Energies, 11(11), 2934.

Liu, X., & Wang, H. (2019). Optimal Sizing of a Battery Pack for Hybrid Electric Vehicles: A Review and Investigation. Energies, 12(18), 3481.

Lu, L., Han, X., Li, J., Hua, J., & Ouyang, M. (2013). A Review on the Key Issues for Lithium-ion Battery Management in Electric Vehicles. Journal of Power Sources, 226, 272-288.

Munir, S., Arif, A. F. M., & Vernet, A. (2020). Optimal Sizing and Component Selection of Hybrid Electric Vehicle Battery Pack with Integrated Modelling and Experimental Validation. Energies, 13(4), 923.

Pisu, P., Serrao, L., & Rizzoni, G. (2013). Optimal Energy Management and Sizing of Battery and Ultracapacitor Hybrids for a Series Hybrid Electric Bus. IEEE Transactions on Vehicular Technology, 62(7), 2794-2804.

Sahin, A., Krein, P. T., & Alleyne, A. G. (2014). Tradeoffs in Sizing of Energy Storage and Fuel Efficiency in Plug-in Hybrid Electric Vehicles. Journal of Power Sources, 248, 876-885.

Simpson, A., & Goebel, K. (2019). Towards a Realistic Performance Model for Hybrid Electric Vehicles. In 2019 14th IEEE Conference on Industrial Electronics and Applications (ICIEA) (pp. 1357-1362). IEEE.

Wang, L., You, S., Zhang, W., & Hu, J. (2017). Optimal Battery Capacity Sizing for Electric Vehicles Based on Different Driving Patterns: A Review. Energies, 10(4), 522.

Published

2024-03-17

How to Cite

Yoqubov Oybek Zafarjon oʻgʻli, & Ravshan Khikmatov. (2024). SELECTING THE CORRECT BATTERY CAPACITY FOR HYBRID VEHICLES. ОБРАЗОВАНИЕ НАУКА И ИННОВАЦИОННЫЕ ИДЕИ В МИРЕ, 41(3), 133–138. Retrieved from https://newjournal.org/01/article/view/12154