Scinovex
article Open AccessTop 1% cited

A Comprehensive Study of Key Electric Vehicle (EV) Components, Technologies, Challenges, Impacts, and Future Direction of Development

Energies · 2017 · Vol. 10(8) · pp. 1217–1217
Fuad Un-NoorSanjeevikumar PadmanabanLucian Mihet‐PopaM. Yousuf A. MollahEklas Hossain

Abstract

Electric vehicles (EV), including Battery Electric Vehicle (BEV), Hybrid Electric Vehicle (HEV), Plug-in Hybrid Electric Vehicle (PHEV), Fuel Cell Electric Vehicle (FCEV), are becoming more commonplace in the transportation sector in recent times. As the present trend suggests, this mode of transport is likely to replace internal combustion engine (ICE) vehicles in the near future. Each of the main EV components has a number of technologies that are currently in use or can become prominent in the future. EVs can cause significant impacts on the environment, power system, and other related sectors. The present power system could face huge instabilities with enough EV penetration, but with proper management and coordination, EVs can be turned into a major contributor to the successful implementation of the smart grid concept. There are possibilities of immense environmental benefits as well, as the EVs can extensively reduce the greenhouse gas emissions produced by the transportation sector. However, there are some major obstacles for EVs to overcome before totally replacing ICE vehicles. This paper is focused on reviewing all the useful data available on EV configurations, battery energy sources, electrical machines, charging techniques, optimization techniques, impacts, trends, and possible directions of future developments. Its objective is to provide an overall picture of the current EV technology and ways of future development to assist in future researches in this sector.

Electric Vehicles and InfrastructureAdvanced Battery Technologies ResearchElectric and Hybrid Vehicle TechnologiesElectric vehicleAutomotive engineeringGreenhouse gasBattery (electricity)Internal combustion engineBattery electric vehicleKey (lock)Market penetrationSystems engineeringEngineering
Citations
677
FWCI
23.89
field-weighted impact
References
179
Percentile
100%
vs. same field & year
Citations per year
Cited by
Integration of wind and solar systems for electric vehicle-to-grid (V2G) power charging applications: A review
International Journal of Advances in Electrical Engineering · 2025 · 0 citations
Global Trends in High-Power On-Board Chargers for Electric Vehicles
IEEE Transactions on Vehicular Technology · 2019 · 604 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.