An Internal Combustion Engine (ICE) under cold conditions experiences increased friction losses due to a high viscosity of the lubricant. With the additional control freedom present in hybrid electric vehicles, the losses during warmup can be minimized and fuel can be saved. In this paper, firstly, a control-oriented model of the ICE, describing the warmup behavior, is developed and validated on measured vehicle data. Secondly, the two-state, non-autonomous fuel optimization, for a parallel hybrid electric vehicle with stop-start functionality, is solved using optimal control theory. The principal behavior of the Lagrange multipliers is explicitly derived, including the discontinuities (jumps) that are caused by the constraints on the l...
This paper presents an optimization algorithm, based on discrete dynamic programming, that aims to f...
This paper proposes an integrated energy and thermal management system (IETMS) to quantify the influ...
Due to the structure of a parallel hybrid, different operating states and degrees of freedom for the...
An Internal Combustion Engine (ICE) under cold conditions experiences increased friction losses due ...
An Internal Combustion Engine (ICE) under cold conditions experiences increased friction losses due ...
Abstract — An Internal Combustion Engine (ICE) under cold conditions experiences increased friction ...
An Internal Combustion Engine (ICE) under cold conditions experiences increased friction losses due ...
This paper investigates the impact of cold-start conditions on the fuel-saving potential and the ass...
This paper presents the design of an optimal Energy Management Strategy (EMS) for a hybrid vehicle t...
To address the problems of low efficiency and high fuel consumption during the cold start and warm-u...
International audienceIn this paper, a numerical solution of the optimal thermal management problem ...
Energy management in electrified vehicles is critical and directly impacts the global operating effi...
Hybrid vehicles have attracted tremendous attention during the last years. Increasing environmental ...
A hybrid thermal-electric vehicle allows some significant fuel economy due to its peculiar...
This paper presents an optimization algorithm, based on discrete dynamic programming, that aims to f...
This paper proposes an integrated energy and thermal management system (IETMS) to quantify the influ...
Due to the structure of a parallel hybrid, different operating states and degrees of freedom for the...
An Internal Combustion Engine (ICE) under cold conditions experiences increased friction losses due ...
An Internal Combustion Engine (ICE) under cold conditions experiences increased friction losses due ...
Abstract — An Internal Combustion Engine (ICE) under cold conditions experiences increased friction ...
An Internal Combustion Engine (ICE) under cold conditions experiences increased friction losses due ...
This paper investigates the impact of cold-start conditions on the fuel-saving potential and the ass...
This paper presents the design of an optimal Energy Management Strategy (EMS) for a hybrid vehicle t...
To address the problems of low efficiency and high fuel consumption during the cold start and warm-u...
International audienceIn this paper, a numerical solution of the optimal thermal management problem ...
Energy management in electrified vehicles is critical and directly impacts the global operating effi...
Hybrid vehicles have attracted tremendous attention during the last years. Increasing environmental ...
A hybrid thermal-electric vehicle allows some significant fuel economy due to its peculiar...
This paper presents an optimization algorithm, based on discrete dynamic programming, that aims to f...
This paper proposes an integrated energy and thermal management system (IETMS) to quantify the influ...
Due to the structure of a parallel hybrid, different operating states and degrees of freedom for the...