The advent of vehicle autonomy, connectivity and electric powertrains is expected to enable the deployment of Autonomous Mobility-on-Demand systems. Crucially, the routing and charging activities of these fleets are impacted by the design of the individual vehicles and the surrounding charging infrastructure which, in turn, should be designed to account for the intended fleet operation. This paper presents a modeling and optimization framework where we optimize the activities of the fleet jointly with the placement of the charging infrastructure. We adopt a mesoscopic planning perspective and devise a time-invariant model of the fleet activities in terms of routes and charging patterns, explicitly capturing the state of charge of the vehicl...
Thesis (Ph.D.)--University of Washington, 2021Battery Electric Vehicles (BEVs) can reduce the emissi...
open access articleOneofthebarriersfortheadoptionofelectricvehicles(EVs)istheanxietyaroundthelimited...
Ride-hailing with autonomous electric vehicles and shared autonomous electric vehicle (SAEV) systems...
The advent of vehicle autonomy, connectivity and electric powertrains is expected to enable the depl...
The advent of vehicle autonomy, connectivity and electric powertrains is expected to enable the depl...
Charging infrastructure is the coupling link between power and transportation networks, thus determi...
The advent of autonomous driving and electrification is enabling the deployment of Electric Autonomo...
The advent of vehicle autonomy and powertrain electrification is paving the way to the deployment of...
Business models rooted in shared economy, electrification, and automation are transforming urban mob...
This paper studies mobility systems that incorporate a substantial solar energy component, generated...
Autonomous electric vehicles are set to replace most conventional vehicles in the near future. Exten...
Shared autonomous electric vehicles, also known as autonomous mobility on demand systems, are expect...
We analyze an optimal electric vehicle (EV) fleet and charging infrastructure capacity planning prob...
This thesis focuses on infrastructure design for the disruptive transportation technologies of elect...
As the transportation sector undergoes three major transformations—electrification, shared/on-demand...
Thesis (Ph.D.)--University of Washington, 2021Battery Electric Vehicles (BEVs) can reduce the emissi...
open access articleOneofthebarriersfortheadoptionofelectricvehicles(EVs)istheanxietyaroundthelimited...
Ride-hailing with autonomous electric vehicles and shared autonomous electric vehicle (SAEV) systems...
The advent of vehicle autonomy, connectivity and electric powertrains is expected to enable the depl...
The advent of vehicle autonomy, connectivity and electric powertrains is expected to enable the depl...
Charging infrastructure is the coupling link between power and transportation networks, thus determi...
The advent of autonomous driving and electrification is enabling the deployment of Electric Autonomo...
The advent of vehicle autonomy and powertrain electrification is paving the way to the deployment of...
Business models rooted in shared economy, electrification, and automation are transforming urban mob...
This paper studies mobility systems that incorporate a substantial solar energy component, generated...
Autonomous electric vehicles are set to replace most conventional vehicles in the near future. Exten...
Shared autonomous electric vehicles, also known as autonomous mobility on demand systems, are expect...
We analyze an optimal electric vehicle (EV) fleet and charging infrastructure capacity planning prob...
This thesis focuses on infrastructure design for the disruptive transportation technologies of elect...
As the transportation sector undergoes three major transformations—electrification, shared/on-demand...
Thesis (Ph.D.)--University of Washington, 2021Battery Electric Vehicles (BEVs) can reduce the emissi...
open access articleOneofthebarriersfortheadoptionofelectricvehicles(EVs)istheanxietyaroundthelimited...
Ride-hailing with autonomous electric vehicles and shared autonomous electric vehicle (SAEV) systems...