A comprehensive study of key electric vehicle (EV) components, technologies, challenges, impacts, and future direction of development

F Un-Noor, S Padmanaban, L Mihet-Popa, MN Mollah… - Energies, 2017 - mdpi.com
Electric vehicles (EV), including Battery Electric Vehicle (BEV), Hybrid Electric Vehicle
(HEV), Plug-in Hybrid Electric Vehicle (PHEV), Fuel Cell Electric Vehicle (FCEV), are …

A review of the stage-of-the-art charging technologies, placement methodologies, and impacts of electric vehicles

H Shareef, MM Islam, A Mohamed - Renewable and Sustainable Energy …, 2016 - Elsevier
The world population depends highly on fossil fuels, particularly for transportation and
power generation. This dependency leads to oil price increases because of the depletion of …

A comprehensive study of implemented international standards, technical challenges, impacts and prospects for electric vehicles

S Habib, MM Khan, F Abbas, L Sang, MU Shahid… - IEEe …, 2018 - ieeexplore.ieee.org
The impending environmental issues and growing concerns for global energy crises are
driving the need for new opportunities and technologies that can meet significantly higher …

Driving behaviour and trip condition effects on the energy consumption of an electric vehicle under real-world driving

Y Al-Wreikat, C Serrano, JR Sodré - Applied Energy, 2021 - Elsevier
This work evaluates driving behaviour, trip distance, ambient temperature, traffic condition
and road grade effects on the specific energy consumption (SEC) of an electric vehicle (EV) …

Value of storage technologies for wind and solar energy

WA Braff, JM Mueller, JE Trancik - Nature Climate Change, 2016 - nature.com
Wind and solar industries have grown rapidly in recent years but they still supply only a
small fraction of global electricity. The continued growth of these industries to levels that …

Potential for widespread electrification of personal vehicle travel in the United States

ZA Needell, J McNerney, MT Chang, JE Trancik - Nature Energy, 2016 - nature.com
Electric vehicles can contribute to climate change mitigation if coupled with decarbonized
electricity, but only if vehicle range matches travellers' needs. Evaluating electric vehicle …

Development of a driving cycle to evaluate the energy economy of electric vehicles in urban areas

J Brady, M O'Mahony - Applied energy, 2016 - Elsevier
Understanding real-world driving conditions in the form of driving cycles is instrumental in
the design of efficient powertrains and energy storage systems for electric vehicles. In …

A comparative assessment of CO2 emission between gasoline, electric, and hybrid vehicles: A Well-To-Wheel perspective using agent-based modeling

MM Rahman, Y Zhou, J Rogers, V Chen… - Journal of Cleaner …, 2021 - Elsevier
Road transports in the United States (US) are heavily dependent on the production and
consumption of fossil fuel. This high dependency on fossil fuels contributes significantly to …

Evaluation of emissions of CO2 and air pollutants from electric vehicles in Italian cities

T Donateo, F Licci, A D'elia, G Colangelo, D Laforgia… - Applied Energy, 2015 - Elsevier
The paper analyzes data about recharge of electric cars in Rome during 2013 as a part of a
national research project (PRIME). The electric vehicles were recharged through the public …

Impacts of plug-in electric vehicles in the portuguese electrical grid

J Delgado, R Faria, P Moura, AT de Almeida - Transportation Research Part …, 2018 - Elsevier
Powertrain electrification is currently the best alternative to ensure sustainable energy
efficient personal mobility, increasing the integration of intermittent Renewable Energy …