An important support in Demand Response (DR) programs can be provided by the Electric Vehicles (EVs). EVs may behave as a load to the grid, a supplier of electricity to the grid or an energy storage device. Thanks to the smart grid enabling technologies, Utilities can manage EVs charging time and rates, gather EVs-detailed meter data and, therefore, implement DR programs. In the present paper an overview on DR definitions and a classification of the types of customers involved and implementable programs is reported. Then a special focus on EVs integration in DR programs is given, stressing the valuable services that EVs in smart grid asset can provid
Thesis (M.S.)--Wichita State University, College of Engineering, Dept. of Electrical Engineering and...
Introduction of demand response (DR) programs could help improve the overall power system stability,...
The concept of zero emission vehicles in terms of plug-in electric vehicles have raised questions ab...
Every year, the number of electric vehicles (EVs) on the roads has been increasing on a large scale....
This paper addresses implementation of Demand Response (DR) programs in competitive electricity mark...
Global electric vehicles sales increased about 10 times from 2011, reaching more than 1 million vehi...
This report is the author’s final year project report, presenting the research about demand response...
Driven by climate change and fast depleting stock of fossil fuel, electrification of transport syste...
In recent decades, moves toward higher integration of Renewable Energy Resources have called for fun...
In the search to accommodate increasing shares of renewable energy into today's electricity system, ...
In this study, we demonstrate the contribution of IS-supported demand response (DR) programs to the ...
The need to improve power system performance, enhance reliability, and reduce environmental effects,...
© 2017 IEEE. The concepts of demand response (DR) and demand side management have been in practice b...
Electrification of transportation creates the premises for a strong interaction with the electric gr...
With the grasp of a smart grid in sight, discussions have shifted the focus of system security measu...
Thesis (M.S.)--Wichita State University, College of Engineering, Dept. of Electrical Engineering and...
Introduction of demand response (DR) programs could help improve the overall power system stability,...
The concept of zero emission vehicles in terms of plug-in electric vehicles have raised questions ab...
Every year, the number of electric vehicles (EVs) on the roads has been increasing on a large scale....
This paper addresses implementation of Demand Response (DR) programs in competitive electricity mark...
Global electric vehicles sales increased about 10 times from 2011, reaching more than 1 million vehi...
This report is the author’s final year project report, presenting the research about demand response...
Driven by climate change and fast depleting stock of fossil fuel, electrification of transport syste...
In recent decades, moves toward higher integration of Renewable Energy Resources have called for fun...
In the search to accommodate increasing shares of renewable energy into today's electricity system, ...
In this study, we demonstrate the contribution of IS-supported demand response (DR) programs to the ...
The need to improve power system performance, enhance reliability, and reduce environmental effects,...
© 2017 IEEE. The concepts of demand response (DR) and demand side management have been in practice b...
Electrification of transportation creates the premises for a strong interaction with the electric gr...
With the grasp of a smart grid in sight, discussions have shifted the focus of system security measu...
Thesis (M.S.)--Wichita State University, College of Engineering, Dept. of Electrical Engineering and...
Introduction of demand response (DR) programs could help improve the overall power system stability,...
The concept of zero emission vehicles in terms of plug-in electric vehicles have raised questions ab...