Research on Safety and Life Management of New Energy Vehicle Batteries

Authors

  • Zhijian Yang

DOI:

https://doi.org/10.54097/1zr5dq73

Keywords:

New Energy Vehicles; Battery Safety; Battery Life; Lithium-Ion Batteries; Lead-Acid Batteries; Nickel-Metal Hydride Batteries.

Abstract

This paper delves into the issues of safety and life management of batteries in new energy vehicles. Firstly, it provides an overview of the main types of batteries used in new energy vehicles and their characteristics, including lithium-ion batteries, lead-acid batteries, nickel-metal hydride batteries, and fuel cells. Subsequently, it analyzes in detail the safety issues associated with new energy vehicle batteries during production and usage, and proposes corresponding solutions. Additionally, it explores the key factors influencing battery life and presents strategies to extend battery usage. These strategies include enhancing battery research and design, improving battery manufacturing processes, implementing proper usage and maintenance practices, and considering battery usage environments. Through this research, the aim is to provide technical support for the healthy development of the new energy vehicle industry and promote the advancement of green transportation.

Downloads

Download data is not yet available.

References

[1] Zhang, W. (2021). Analysis of the current development status of fuel cell technology in new energy vehicles. Journal of Functional Materials, (3), 23-28.

[2] Xue, Y., & Chen, Q. (2023). Research on the current status and development trends of battery types in new energy vehicles. Era Automobile, (19), 106-108.

[3] Zhang, Z. (2023). Research on new energy vehicle batteries and their lifespan. Automotive Testing Report, (23), 61-63.

[4] Li, S. (2021). Analysis of the unified standard operation of power batteries in new energy vehicles. China Standardization, (24), 138-140.

[5] Wu, J., Shi, C., & Wu, G. (2020). Development of electric vehicle battery electronic components based on functional safety standards. Instrument Technique, (06), 7-12.

[6] Chen, Z., Xiong, R., & Sun, F. (2019). Analysis and research status of safety accidents in electric vehicle batteries. Journal of Mechanical Engineering, 55(24), 93-104+116.

[7] Wang, Z., Li, X., Yuan, C., et al. (2021). Challenges and development trends of fault diagnosis technology for electric vehicle power batteries under big data. Journal of Mechanical Engineering, 57(14), 52-63.

[8] Liu, S., & Zhong, W. (2022). Maintenance of electric vehicle power battery management system and high-voltage distribution system: Evaluation of "Maintenance of Electric Vehicle Power Battery and Management System". Battery, (06), 724-725.

[9] Wei, N. (2020). Analysis of how to extend the lifespan of new energy vehicle batteries. Popular Standardization, (24), 60-61.

[10] Lu, C. (2020). Problems and countermeasures in new energy vehicle battery technology. Southern Agricultural Machinery, (14), 169-170.

[11] Li, L. (2020). Correct usage and maintenance to extend the lifespan of batteries. Agricultural Machinery Use and Maintenance, (07), 97. doi: 10.14031/j.cnki.njwx.2020.07.071.

[12] Zhang, P. (2021). Fault diagnosis and troubleshooting methods for core technologies of batteries in new energy vehicles. Internal Combustion Engine and Accessories, (23), 126-127. doi:10. 19475/j.cnki.issn1674-957x.2021.23.060.

Downloads

Published

20-08-2024

Issue

Section

Articles

How to Cite

Yang , Z. (2024). Research on Safety and Life Management of New Energy Vehicle Batteries. Academic Journal of Science and Technology, 12(1), 287-290. https://doi.org/10.54097/1zr5dq73