Electric vehicles (EVs) have received wide attention due to their higher energy efficiency and lower emissions. However, the random charging and discharging behaviors of substantial numbers of EVs may lead to safety risk problems in a distribution network. Reasonable price incentives can guide EVs through orderly charging and discharging, and further provide a feasible solution to reduce the operational risk of the distribution network. Considering three typical electricity prices, EV charging/discharging load models are built. Then, a Probabilistic Load Flow (PLF) method using cumulants and Gram-Charlier series is proposed to obtain the power flow of the distribution network including massive numbers of EVs. In terms of the risk indexes of...
This work analyzes impacts on distribution networks produced by the connection ofdiverse types of Pl...
Battery charging of electric vehicles (EVs) will increase the power demand in distribution networks....
Paper presented at CIRED 2011, the 21st International Conference on Electricity Distribution, Frankf...
The temporal and spatial distribution of electric vehicle charging load (EVCL) is closely related wi...
Integration of large-scale cluster electric vehicles (EVs) and their spatial-temporal transfer rando...
Integrating EV charging station into power grid will bring impacts on power system, among which the ...
With the increasing penetration of electric vehicles (EVs), more and more interactions appear betwee...
This paper presents a method of forecasting and modeling of electric vehicle charging load in differ...
With incentive policies introduced in developed countries and advent of electric vehicle (EV) techno...
As the number of electric vehicles (EV) increases, technical concerns deal with additional load intr...
To reduce the risk of voltage violation after gas station networks (GSNs) are attacked, this study i...
Battery charging of Electric Vehicles (EVs) will increase the power demand in distribution networks....
The usage of Electric vehicles is increasing every day, and its penetration into the present electri...
An increase in the penetration level of EVs will increase the power demand in distribution networks....
This work analyzes impacts on distribution networks produced by the connection ofdiverse types of Pl...
Battery charging of electric vehicles (EVs) will increase the power demand in distribution networks....
Paper presented at CIRED 2011, the 21st International Conference on Electricity Distribution, Frankf...
The temporal and spatial distribution of electric vehicle charging load (EVCL) is closely related wi...
Integration of large-scale cluster electric vehicles (EVs) and their spatial-temporal transfer rando...
Integrating EV charging station into power grid will bring impacts on power system, among which the ...
With the increasing penetration of electric vehicles (EVs), more and more interactions appear betwee...
This paper presents a method of forecasting and modeling of electric vehicle charging load in differ...
With incentive policies introduced in developed countries and advent of electric vehicle (EV) techno...
As the number of electric vehicles (EV) increases, technical concerns deal with additional load intr...
To reduce the risk of voltage violation after gas station networks (GSNs) are attacked, this study i...
Battery charging of Electric Vehicles (EVs) will increase the power demand in distribution networks....
The usage of Electric vehicles is increasing every day, and its penetration into the present electri...
An increase in the penetration level of EVs will increase the power demand in distribution networks....
This work analyzes impacts on distribution networks produced by the connection ofdiverse types of Pl...
Battery charging of electric vehicles (EVs) will increase the power demand in distribution networks....
Paper presented at CIRED 2011, the 21st International Conference on Electricity Distribution, Frankf...