[HTML][HTML] Urban air mobility: A comprehensive review and comparative analysis with autonomous and electric ground transportation for informing future research

LA Garrow, BJ German, CE Leonard - Transportation Research Part C …, 2021 - Elsevier
Urban air mobility (UAM), if successful, will disrupt urban transportation. UAM is not the first
disruptive technology in transportation, with recent examples including electric ground …

The rise of electric vehicles—2020 status and future expectations

M Muratori, M Alexander, D Arent, M Bazilian… - Progress in …, 2021 - iopscience.iop.org
Electric vehicles (EVs) are experiencing a rise in popularity over the past few years as the
technology has matured and costs have declined, and support for clean transportation has …

[HTML][HTML] Charging infrastructure access and operation to reduce the grid impacts of deep electric vehicle adoption

S Powell, GV Cezar, L Min, IML Azevedo, R Rajagopal - Nature Energy, 2022 - nature.com
Electric vehicles will contribute to emissions reductions in the United States, but their
charging may challenge electricity grid operations. We present a data-driven, realistic model …

A review and simple meta-analysis of factors influencing adoption of electric vehicles

V Singh, V Singh, S Vaibhav - … Research Part D: Transport and Environment, 2020 - Elsevier
The deployment of electric vehicles (EVs) may mitigate major issues such as environmental
pollution and dependence on oil. However, the current market penetration of EV is still at the …

[HTML][HTML] Electric vehicle charging infrastructure planning for integrated transportation and power distribution networks: A review

T Unterluggauer, J Rich, PB Andersen, S Hashemi - ETransportation, 2022 - Elsevier
Environmental concerns and urban air pollution are major drivers for the transition from
combustion engines to electric vehicles. To support a large-scale adoption of electric …

Crafting strong, integrated policy mixes for deep CO2 mitigation in road transport

J Axsen, P Plötz, M Wolinetz - Nature Climate Change, 2020 - nature.com
Transport CO2 emissions continue to grow globally despite advances in low-carbon
technology and goal setting by numerous governments. In this Perspective, we summarize …

[HTML][HTML] How much charging infrastructure do electric vehicles need? A review of the evidence and international comparison

SÁ Funke, F Sprei, T Gnann, P Plötz - Transportation research part D …, 2019 - Elsevier
Plug-In electric vehicles (PEV) are in an early market phase in almost all markets. Still, the
lack of public charging infrastructure is a barrier to PEV adoption. The assessment of future …

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 …

A review of 6G autonomous intelligent transportation systems: Mechanisms, applications and challenges

X Deng, L Wang, J Gui, P Jiang, X Chen, F Zeng… - Journal of Systems …, 2023 - Elsevier
Thanks to the explosive evolution of 6G, Artificial intelligence, Blockchain, Cloud computing,
Data, and Edge computing (6G+ ABCDE), it is possible to make Intelligent Transportation …

Transport (Chapter 10)

P Jaramillo, S Kahn Ribeiro, P Newman, S Dhar… - 2022 - pure.iiasa.ac.at
Meeting climate mitigation goals would require transformative changes in the transport
sector (high confidence). In 2019, direct greenhouse gas (GHG) emissions from the transport …