Charging facility planning and scheduling problems for battery electric bus systems: A comprehensive review

Y Zhou, H Wang, Y Wang, B Yu, T Tang - Transportation Research Part E …, 2024 - Elsevier
The adoption of battery electric buses (BEBs) has gained significant momentum in the public
transportation sector due to their environmental and energy-saving merits. Nonetheless …

A generic cost-utility-emission optimization for electric bus transit infrastructure planning and charging scheduling

A Foda, H Abdelaty, M Mohamed, E El-Saadany - Energy, 2023 - Elsevier
Implementing battery electric buses (BEB) in transit operation is a promising avenue for
reducing greenhouse gas (GHG) emissions. However, challenges are associated with the …

Optimization framework for integrated battery electric bus planning and charging scheduling

P Gairola, N Nezamuddin - Transportation Research Part D: Transport and …, 2023 - Elsevier
Battery electric bus's (BEB) limited operating range and lengthy charging duration are a
cause of concern to BEB operators. Fast-charging technology can decrease charging time …

Electric bus charging facility planning with uncertainties: Model formulation and algorithm design

Y Zhou, GP Ong, Q Meng, H Cui - Transportation Research Part C …, 2023 - Elsevier
This paper investigates the electric bus charging facility planning (EB-CFP) problem for a
bus transit company operating a heterogeneous electric bus (EB) fleet to provide public …

En-route fast charging infrastructure planning and scheduling for battery electric bus systems

X Wang, Z Song, H Xu, H Wang - Transportation Research Part D: Transport …, 2023 - Elsevier
The recent advancements toward fast charging technology enable electric buses to be re-
charged at bus stops during passengers' boarding and alighting times. The costs of en-route …

Reliable dynamic wireless charging infrastructure deployment problem for public transport services

Y Wang, Y Zhou, X Yan - European Journal of Operational Research, 2024 - Elsevier
Dynamic wireless power transfer (DWPT) technology offers the promise of eliminating the
limited driving range of electric buses (EBs), providing greater convenience and safety …

Electric-vehicle charging facility deployment models for dense-city residential carparks considering demand uncertainty and grid dynamics

H Wang, Q Meng, L Xiao - Transportation Research Part C: Emerging …, 2024 - Elsevier
As the driving range of electric vehicles (EVs) increases, home-based charging has been
becoming the dominant strategy for EV users to replenish electricity in urban e-mobility …

Long-term charging infrastructure deployment and bus fleet transition considering seasonal differences

L Zhang, Z Liu, W Wang, B Yu - Transportation Research Part D: Transport …, 2022 - Elsevier
The innovations in battery technologies facilitate worldwide bus electrification, which can
conserve energy and reduce emissions. This paper studies the long-term bus electrification …

Electrification of a citywide bus network: A data-driven micro-simulation approach

S Wang, Y Li, A Chen, C Zhuge - Transportation Research Part D: Transport …, 2023 - Elsevier
This paper developed a data-driven micro-simulation optimization model to deploy charging
infrastructure for a large-scale electric bus network, considering both traditional charging …

Modelling benefit-to-cost ratio for initial phase electrification using battery electric bus

U Panta, P Gairola, N Nezamuddin - Transport Policy, 2024 - Elsevier
In light of growing global concern regarding environmental pollution, greenhouse gas
emission and fast-depleting petroleum resources, electric buses are being considered as an …