This paper uses a game of strategic interaction to simulate entry and location of fast charging stations for electric vehicles. It evaluates the equilibria obtained in terms of social welfare and firm spatial differentiation. Using Barcelona mobility survey, demographic data and the street graph we find that only at an electric vehicle penetration rate above 3% does a dense network of stations appear as the equilibrium outcome of a market with no fiscal transfers. We also find that price competition drives location differentiation measured not only in Euclidean distances but also in consumer travel distances
The Electric Vehicle (EV) market has been growing exponentially in recent years, which is why the di...
The diffusion of plug-in electric vehicles (PEVs) in Germany is a slow starter – also due to the ran...
Abstract—To facilitate the adoption of electric vehicles (EVs) and their plug-in hybrid (PHEVs) coun...
This paper uses a game of strategic interaction to simulate entry and location of fast charging stat...
En-route charging stations are essential to ensure the adoption of electric vehicles. However, caref...
En-route charging stations are required to ensure the adoption of Electric Vehicles. However, carefu...
The placement of electric vehicle charging stations (EVCSs), which encourages the rapid development ...
With the increasing deployment of electric vehicles (EVs), electric vehicle charging stations (EVCSs...
We address the problem of Electric Vehicle (EV) drivers' assistance through Intelligent Transportati...
Inappropriate deployment of charging stations not only hinders the mass adoption of Electric Vehicle...
Widespread acceptance of all electric vehicles faces two major challenges. First being the higher pr...
The “chicken-and-egg” link between charging infrastructure and electric vehicle adoption complicates...
Due to the world’s shortage of fossil fuels and the serious environmental pollution from burning the...
We consider a network of electric vehicles (EVs) and its components: vehicles, charging stations, an...
This dataset contains the experimental findings of the PhD thesis entitled "Planning and Analys...
The Electric Vehicle (EV) market has been growing exponentially in recent years, which is why the di...
The diffusion of plug-in electric vehicles (PEVs) in Germany is a slow starter – also due to the ran...
Abstract—To facilitate the adoption of electric vehicles (EVs) and their plug-in hybrid (PHEVs) coun...
This paper uses a game of strategic interaction to simulate entry and location of fast charging stat...
En-route charging stations are essential to ensure the adoption of electric vehicles. However, caref...
En-route charging stations are required to ensure the adoption of Electric Vehicles. However, carefu...
The placement of electric vehicle charging stations (EVCSs), which encourages the rapid development ...
With the increasing deployment of electric vehicles (EVs), electric vehicle charging stations (EVCSs...
We address the problem of Electric Vehicle (EV) drivers' assistance through Intelligent Transportati...
Inappropriate deployment of charging stations not only hinders the mass adoption of Electric Vehicle...
Widespread acceptance of all electric vehicles faces two major challenges. First being the higher pr...
The “chicken-and-egg” link between charging infrastructure and electric vehicle adoption complicates...
Due to the world’s shortage of fossil fuels and the serious environmental pollution from burning the...
We consider a network of electric vehicles (EVs) and its components: vehicles, charging stations, an...
This dataset contains the experimental findings of the PhD thesis entitled "Planning and Analys...
The Electric Vehicle (EV) market has been growing exponentially in recent years, which is why the di...
The diffusion of plug-in electric vehicles (PEVs) in Germany is a slow starter – also due to the ran...
Abstract—To facilitate the adoption of electric vehicles (EVs) and their plug-in hybrid (PHEVs) coun...