Extreme ambient temperatures cause electric vehicles’ batteries to deteriorate and have a major impact on driving range, which is a barrier for mass production of electric vehicles. Recently, much research on the optimized temperature of the battery and energy management of an electric vehicle has been conducted, but the vehicle-level optimization (i.e., vehicle speed and position optimizations) has not yet been considered together. This paper proposes a hierarchical model predictive control structure for vehicle-level and electric powertrain-level optimizations simultaneously. Specifically, using vehicle communication technologies to forecast future traffic, the required vehicle traction power coupled with battery dynamics can be pr...
This thesis explores the possibility of using an optimal control scheme called Model Predictive Cont...
Optimal load sharing through balancing has the potential of increasing the lifetime and capacity of ...
Power management strategies have impacts on fuel economy, greenhouse gasses (GHG) emission, as well ...
This paper conducts a regenerative braking-based cabin thermal management by developing a hierarchic...
Integrated power and thermal management (iPTM) of electrified vehicles, such as hybrid electric vehi...
AbstractThe energy consumption of comfort components influences the range of electric vehicles signi...
This paper presents a method of predicting the maximum power capability of a Li-Ion battery, to be u...
This paper presents a method of predicting the maximum power capability of a Li-Ion battery, to be u...
The primary objective of a hybrid electric vehicle (HEV) is to optimize the energy consumption of th...
International audienceOne of the biggest shortcomings of Electric Vehicles (EV) is related to the ra...
With increasing numbers of electric and hybrid vehicles on the road, transportation presents a uniqu...
This paper proposes a detailed battery thermal management system for electrified powertrains. A batt...
i Battery energy management plays a crucial role in fuel economy improvement of charge-sustaining pa...
© 2016 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
Thermal management systems play an important role in maintaining the required operating conditions o...
This thesis explores the possibility of using an optimal control scheme called Model Predictive Cont...
Optimal load sharing through balancing has the potential of increasing the lifetime and capacity of ...
Power management strategies have impacts on fuel economy, greenhouse gasses (GHG) emission, as well ...
This paper conducts a regenerative braking-based cabin thermal management by developing a hierarchic...
Integrated power and thermal management (iPTM) of electrified vehicles, such as hybrid electric vehi...
AbstractThe energy consumption of comfort components influences the range of electric vehicles signi...
This paper presents a method of predicting the maximum power capability of a Li-Ion battery, to be u...
This paper presents a method of predicting the maximum power capability of a Li-Ion battery, to be u...
The primary objective of a hybrid electric vehicle (HEV) is to optimize the energy consumption of th...
International audienceOne of the biggest shortcomings of Electric Vehicles (EV) is related to the ra...
With increasing numbers of electric and hybrid vehicles on the road, transportation presents a uniqu...
This paper proposes a detailed battery thermal management system for electrified powertrains. A batt...
i Battery energy management plays a crucial role in fuel economy improvement of charge-sustaining pa...
© 2016 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
Thermal management systems play an important role in maintaining the required operating conditions o...
This thesis explores the possibility of using an optimal control scheme called Model Predictive Cont...
Optimal load sharing through balancing has the potential of increasing the lifetime and capacity of ...
Power management strategies have impacts on fuel economy, greenhouse gasses (GHG) emission, as well ...