Electrification of bus fleets in most cities is expected to rise due to its significant environmental benefits. However, electric buses have limited driving range and long …
H Hu, B Du, W Liu, P Perez - Transportation Research Part C: Emerging …, 2022 - Elsevier
The continuous improvement of charging technologies makes fast charging applicable to overcoming the limited driving range of electric vehicles by providing en-route opportunity …
Y He, Z Liu, Z Song - Transportation Research Part D: Transport and …, 2022 - Elsevier
Studies on the electric bus system planning problem have typically focused exclusively on either the deployment of charging infrastructure or the scheduling of charging events; few …
Y Zhou, Q Meng, GP Ong - Transportation Research Part B …, 2022 - Elsevier
This study deals with a fundamental electric bus charging scheduling (EBCS) problem for a single public transport route by considering the nonlinear electric bus (EB) charging profile …
The electrification of the transportation sector leads to an increased deployment of lithium- ion batteries in vehicles. Today, traction batteries are installed, for example, in electric cars …
Increasing the share of Electric Vehicles (EVs) powered by renewable-based Distributed Energy Resources (DERs) is a key step towards climate neutrality. However, increasing the …
D Huang, Y Wang, S Jia, Z Liu… - … A: Transport Science, 2023 - Taylor & Francis
The planning and operational decision-making problems of electric transit systems have received significant attention recently in the process of transport electrification. Given an …
Battery-electric buses (BEBs) are a promising technology for replacing diesel buses and reducing their environmental burden. However, their charging process can take several …
B Verbrugge, MM Hasan, H Rasool, T Geury… - Sustainability, 2021 - mdpi.com
This paper provides a comprehensive overview of the state-of-the-art related to the implementation of battery electric buses (BEBs) in cities. In recent years, bus operators have …