COMPARATIVE ANALYSIS OF THE PERFORMANCE OF BATTERY ELECTRIC VEHICLES AND CONVENTIONAL INTERNAL COMBUSTION ENGINE VEHICLES

Authors

  • Islombek Asqarovich Karimov Bachelor’s degree student in the faculty of Mechanical and Energy Engineering in Turin Polytechnic University in Tashkent
  • Umidjon Ravshan o‘g‘li Usmanov Master of technical sciences. Teacher in Mechanical and Aerospace engineering department in Turin Polytechnic University in Tashkent

Keywords:

Battery electric vehicles (BEV), internal combustion engine (ICE), electric machine (EM).

Abstract

Comparative analysis of the performance of battery electric vehicle (BEV) and conventional internal combustion engine vehicles illustrates broadly difference of on working principles that our choice leads to which one of the vehicles is more convenient and eco-friendly. The parameters of both types of vehicles will be  considered comparatively by their current structural state which helps to distinguish improved sphere on manufactured new model. In addition, the performance of the electric machine (EM) and internal combustion engine (ICE) is analyzed that the comparison of relevant parameters as well as the discussion of advantages and disadvantages will be provided.

References

Laura Lachvajderová, Jaroslava Kádárová: Analysis of internal combustion engine vehicle, battery electric vehicle and emissions from transport, technical university of Kosice, faculty of mechanical engineering, department of industrial and digital engineering, park komenskeho 9, 040 01 Kosice, Slovakia,

Lachvajderová, l., Kádárová, j. 2020:“ emissions in life cycle of electric vehicle,”, perner’s contacts 15(2), pp. 1–8. doi: 10.46585/pc.2020.2.1626.

Arivazhagan, Tsegaye Alemayehu Atiso:

Battery electric vehicles vs internal combustion engine vehicles, Salem, Tamil Nadu, India, www.irjet.net

Živčák, J.; Kádárová, J.; Puškár, M.; Kočišová, M.; Lachvajderová, L. 2020:

„Expected Impacts of the Massive Increase in Electric Vehicles in Slovakia,“ Appl.

Sci., 10, 8945. DOI: 10.3390/app10248945.

Jongroul 〖Woo〗^(a,*),and Christopher l. 〖Magee〗^(a,b): Forecasting the value of battery electric vehicles compared to internal combustion engine vehicles: the influence of driving range and battery technology, a Institute for Data, Systems, and Society, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139-4307, United States

b SUTD-MIT International Design Center, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139-4307, United States

Madeleine Stone: charging-electric-cars-ever-be-as-fast-as-pumping-gas, https://www.nationalgeographic.com/environment/article/will-charging-electric-cars-ever-be-as-fast-as-pumping-gas

Types of Hybrid Electric Vehicles (HEV), (figure 1),https://x-engineer.org/types-hybrid-electric-vehicles-hev/

Muhammad Rizalul Wahid, Bentang Arief Budiman, Endra Joelianto and Muhammad Aziz:

A Review on Drive Train Technologies for Passenger Electric Vehicles (figure 2), https://www.mdpi.com/1996-1073/14/20/6742/htm

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Published

2022-06-15

How to Cite

Karimov, I. A., & Usmanov, U. R. o‘g‘li. (2022). COMPARATIVE ANALYSIS OF THE PERFORMANCE OF BATTERY ELECTRIC VEHICLES AND CONVENTIONAL INTERNAL COMBUSTION ENGINE VEHICLES. INTERNATIONAL СONFERENCE ON LEARNING AND TEACHING, 1(9), 87–93. Retrieved from https://researchedu.org/index.php/iclt/article/view/1847