Electric vehicle behavior modeling and applications in vehicle-grid integration: An overview

X Li, Z Wang, L Zhang, F Sun, D Cui, C Hecht… - Energy, 2023 - Elsevier
The increasing electric vehicle (EV) adoption in the context of transportation electrification
and carbon neutrality pursuit brings both new challenges and opportunities for all the …

Photovoltaics at multi-terawatt scale: Waiting is not an option

NM Haegel, P Verlinden, M Victoria, P Altermatt… - Science, 2023 - science.org
A major renewable-energy milestone occurred in 2022: Photovoltaics (PV) exceeded a
global installed capacity of 1 TWdc. But despite considerable growth and cost reduction over …

Electric vehicle advancements, barriers, and potential: A comprehensive review

AM Çolak, E Irmak - Electric Power Components and Systems, 2023 - Taylor & Francis
Electric vehicles (EVs) have emerged as a promising solution to address environmental
concerns and transform the transportation sector. This paper examines the state-of-the-art …

Reliability of electric vehicle charging infrastructure: A cross-lingual deep learning approach

Y Liu, A Francis, C Hollauer, MC Lawson… - Communications in …, 2023 - Elsevier
Vehicle electrification has emerged as a global strategy to address climate change and
emissions externalities from the transportation sector. Deployment of charging infrastructure …

[PDF][PDF] Strategies for beneficial electric vehicle charging to reduce peak electricity demand and store solar energy

Z Needell, W Wei, JE Trancik - Cell Reports Physical Science, 2023 - cell.com
Battery electric vehicle (BEV) and photovoltaic (PV) electricity adoption increases in many
climate change mitigation scenarios, yet large-scale deployment of these technologies, if left …

Charging private electric vehicles solely by photovoltaics: A battery-free direct-current microgrid with distributed charging strategy

X Liu, Z Fu, S Qiu, T Zhang, S Li, Z Yang, X Liu, Y Jiang - Applied Energy, 2023 - Elsevier
Charging electric vehicles (EV) by photovoltaics (PV) contributes to achieving carbon
neutrality, but puts pressure on urban renewal, eg, large investments in distribution grid …

Building-centric investigation into electric vehicle behavior: A survey-based simulation method for charging system design

X Liu, Z Fu, S Qiu, S Li, T Zhang, X Liu, Y Jiang - Energy, 2023 - Elsevier
Demand-side decarbonization and electrification promote a strong coupling between
electric vehicles (EVs) and buildings. From a building-centric perspective, this paper …

[HTML][HTML] Impacts of charging behavior on BEV charging infrastructure needs and energy use

Y Liao, Ç Tozluoğlu, F Sprei, S Yeh… - … Research Part D …, 2023 - Elsevier
Battery electric vehicles (BEVs) are vital in the sustainable future of transport systems.
Increased BEV adoption makes the realistic assessment of charging infrastructure demand …

A safe reinforcement learning-based charging strategy for electric vehicles in residential microgrid

S Zhang, R Jia, H Pan, Y Cao - Applied Energy, 2023 - Elsevier
With the growing popularity of electric vehicles (EVs), it is a new challenge for the residential
microgrid system to conduct charging scheduling to meet the charging demands of EVs …

Decarbonization potential of electrifying 50% of US light-duty vehicle sales by 2030

M Woody, GA Keoleian, P Vaishnav - Nature Communications, 2023 - nature.com
The US federal government has established goals of electrifying 50% of new light-duty
vehicle sales by 2030 and reducing economy-wide greenhouse gas emissions 50-52% by …