Real-Time charging strategies, in the context of vehicle to grid technology, are needed to enable the use of electric vehicle fleets batteries to provide ancillary services. In this paper, we develop tools to manage charging and discharging in a fleet to track an automatic generation control signal when aggregated. We propose a real-Time controller that considers bidirectional charging efficiency and extend it to study the effect of looking ahead when implementing model predictive control. Simulations show that the controller improves tracking error as compared with benchmark scheduling algorithms, as well as regulation capacity and battery cycling
© 2017 IEEE Next-generation power grids will likely enable concurrent service for residences and plu...
The expected increase of Electric Vehicles (EVs) will have a huge impact on the electrical grid oper...
This paper presents a method for the real-time management of electric vehicles (EVs) charging proces...
Real-Time charging strategies, in the context of vehicle to grid technology, are needed to enable th...
We consider the problem of controlling the charging of electric vehicles (EVs) connected to a single...
The increasing use of Electric Vehicles (EVs) connected to the power grid generates challenges in th...
Electric vehicles (EVs) are already part of today's reality and their number is expected to grow rap...
AbstractApart from the potential to reduce emissions and reliance on petroleum, large-scale adoption...
An electric vehicle (EV) charging method which considers the EVs heterogeneity, taking into account ...
In this paper we outline a novel approach for the design of an electric vehicle (EV) aggregator, a c...
The paper presents an event driven model predictive control (MPC) framework for managing charging op...
AbstractWe have explored to what extent charging electrical vehicles (EVs) can be exploited to stabi...
The electrification of the transportation industry has emerged as a promising solution to reduce aut...
This paper illustrates the principles of Model Predictive Control (MPC) applied to control the dispa...
The expected increase of Electric Vehicles (EVs) will have a huge impact on the electrical grid oper...
© 2017 IEEE Next-generation power grids will likely enable concurrent service for residences and plu...
The expected increase of Electric Vehicles (EVs) will have a huge impact on the electrical grid oper...
This paper presents a method for the real-time management of electric vehicles (EVs) charging proces...
Real-Time charging strategies, in the context of vehicle to grid technology, are needed to enable th...
We consider the problem of controlling the charging of electric vehicles (EVs) connected to a single...
The increasing use of Electric Vehicles (EVs) connected to the power grid generates challenges in th...
Electric vehicles (EVs) are already part of today's reality and their number is expected to grow rap...
AbstractApart from the potential to reduce emissions and reliance on petroleum, large-scale adoption...
An electric vehicle (EV) charging method which considers the EVs heterogeneity, taking into account ...
In this paper we outline a novel approach for the design of an electric vehicle (EV) aggregator, a c...
The paper presents an event driven model predictive control (MPC) framework for managing charging op...
AbstractWe have explored to what extent charging electrical vehicles (EVs) can be exploited to stabi...
The electrification of the transportation industry has emerged as a promising solution to reduce aut...
This paper illustrates the principles of Model Predictive Control (MPC) applied to control the dispa...
The expected increase of Electric Vehicles (EVs) will have a huge impact on the electrical grid oper...
© 2017 IEEE Next-generation power grids will likely enable concurrent service for residences and plu...
The expected increase of Electric Vehicles (EVs) will have a huge impact on the electrical grid oper...
This paper presents a method for the real-time management of electric vehicles (EVs) charging proces...