A Comprehensive Analysis of Electric Vehicles Models and Design Methodologies

Authors

  • Araf Taher Almasri Department of Mechanical Engineering Faculty of Engineering, Tobruk University Tobruk, Libya Author

DOI:

https://doi.org/10.64516/ygt3zc30

Abstract

Considerable attempts have been undertaken to resolve these issues as environmental harm caused by human activity has come to light. These projects include encouraging the use of bicycles as an alternative to conventional cars and recycling and reusing goods. Concurrently, the automobile sector is leading the way in the creation of pollution-free vehicles. In this paper, the mechanics of electric vehicles (EVs) is examined, as well as their advantages, disadvantages, difficulties, and the current debate about social standardisation. Several factors affect the acceptance of EVs, including their technological underpinnings, their effects on society and the environment. In addition to examining several different battery technologies, this study offers an in-depth comparison of lead-acid and lithium-ion batteries, given how important batteries are to electric cars (EVs). Besides looking at power control and battery energy management techniques, it also discusses the many standards that are presently being established for electric vehicle charging. As EVs advance, the paper examines new technologies that may improve their performance, dependability, and safety.

References

1. Abd El Halim, A. A. E. B., Bayoumi, E. H. E., El-Khattam, W., & Ibrahim, A. M. (2022). Electric vehicles: A review of their components and technologies. Energy and Renewable Energy Department, Faculty of Engineering, Egyptian Chinese University.

2. Akhil, A.A.; Huff, G.; Currier, A.B.; Kaun, B.C.; Rastler, D.M.; Chen, S.B.; Cotter, A.L.; Bradshaw, D.T.; Gauntlett, W.D. DOE/EPRI 2013 Electricity Storage Handbook in Collaboration with NRECA. In Sandia Report, Sand; Sandia National Laboratories: Albuquerque, NM, USA, 2013; pp. 201–213.

3. Glowacz, A. (2014). Diagnostics of DC and induction motors based on the analysis of acoustic signals. Measurement Science Review, 14(5), 257–261.

4. How much does the average person spend on gas. How to Create. (2021, November 20). Retrieved March 13, 2022, from https://howtocreate.com/miscellaneous/query-how-much-does-the-average-person-spend-on-gas-13096/

5. Larminie, J., & Lowry, J. (2012). Electric vehicle technology explained (2nd ed.). John Wiley & Sons Ltd.

6. Lindwall, C. (2024, March 21). Electric vs. gas cars: Is it cheaper to drive an EV? NRDC. https://www.nrdc.org/stories/electric-vs-gas-cars-it-cheaper-drive-ev

7. Qinyu, Q.; Fuquan, Z.; Zongwei, L.; Xin, H.; Han, H. Life cycle greenhouse gas emissions of Electric vehicles in China: Combining the vehicle cycle and fuel cycle. Energy 2019, 177, 222–233.

8. Sanguesa, J. A., Torres-Sanz, V., Garrido, P., Martinez, F. J., & Marquez-Barja, J. M. (2021). A review on electric vehicles: Technologies and challenges. Smart Cities, 4(1), 372–404.

9. Spelman, J. C. (1997). Boston motordom: Automobiles and the transformation of the city, 1899-1930 (Doctoral dissertation, University of Virginia).

10. Sun, X., Li, Z., Wang, X., & Li, C. (2019). Technology development of electric vehicles: A review. School of Automobile and Transportation, Shenzhen Polytechnic.

11. Weintraub, S., Toll, M., Graham, S., Lambert, F., & Berman, B. (2022, February 10). Exclusives archives. Electrek. Retrieved March 13, 2022, from https://electrek.co/feature/exclusives/

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Published

31-12-2024

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Section

Articles

How to Cite

[1]
A. T. Almasri, “A Comprehensive Analysis of Electric Vehicles Models and Design Methodologies”, TUJES, vol. 5, no. 2, pp. 1–10, Dec. 2024, doi: 10.64516/ygt3zc30.