Optimal load sharing through balancing has the potential of increasing the lifetime and capacity of the lithiumion battery. This paper presents a model predictive control (MPC) approach for optimal load sharing for lithium-ion multi-battery systems in electric vehicles. The primary objective is the satisfaction of the motoring or regenerative load power demand. Secondary objectives are state of charge (SoC) and temperature balancing amongst battery units. An advanced electro-thermal model which includes a two-state thermal model is used, which leads to better performance in terms of temperature balancing and control. The proposed MPC controller, which reduces battery degradation, is validated through simulations under the urban dynamometer ...
In this study, the simultaneous use of a multi-level converter (MLC) as a DC-motor drive and as an a...
Driven by the needs to reduce the dependence of fossil fuels and the emissions of conventional vehic...
This paper presents a method of predicting the maximum power capability of a Li-Ion battery, to be u...
Thermal and state-of-charge (SOC) imbalance is well known to cause non-uniform ageing in batteries. ...
© assigned jointly to the European Power Electronics and Drives Association & the Institute of Elect...
Lithium-ion battery packs are usually composed of hundreds of cells arranged in series and parallel ...
This paper proposes a novel model predictive control algorithm to achieve voltage regulation and sim...
This paper proposes a simple constrained proportional controller with gain scheduling for simultaneo...
Model Predictive Control (MPC) has shown great success in different industrial applications, as it ...
Various balancing topology and control methods have been proposed for the inconsistency problem of b...
Battery energy storage is being installed behind-the-meter to reduce electrical bills while improvin...
Charging time and lifetime are important performances for lithium-ion (Li-ion) batteries, but are of...
Electric vehicle battery performance near end-of-life is limited by mismatched cell degradation, lea...
Extreme ambient temperatures cause electric vehicles’ batteries to deteriorate and have a maj...
This paper presents a method of predicting the maximum power capability of a Li-Ion battery, to be u...
In this study, the simultaneous use of a multi-level converter (MLC) as a DC-motor drive and as an a...
Driven by the needs to reduce the dependence of fossil fuels and the emissions of conventional vehic...
This paper presents a method of predicting the maximum power capability of a Li-Ion battery, to be u...
Thermal and state-of-charge (SOC) imbalance is well known to cause non-uniform ageing in batteries. ...
© assigned jointly to the European Power Electronics and Drives Association & the Institute of Elect...
Lithium-ion battery packs are usually composed of hundreds of cells arranged in series and parallel ...
This paper proposes a novel model predictive control algorithm to achieve voltage regulation and sim...
This paper proposes a simple constrained proportional controller with gain scheduling for simultaneo...
Model Predictive Control (MPC) has shown great success in different industrial applications, as it ...
Various balancing topology and control methods have been proposed for the inconsistency problem of b...
Battery energy storage is being installed behind-the-meter to reduce electrical bills while improvin...
Charging time and lifetime are important performances for lithium-ion (Li-ion) batteries, but are of...
Electric vehicle battery performance near end-of-life is limited by mismatched cell degradation, lea...
Extreme ambient temperatures cause electric vehicles’ batteries to deteriorate and have a maj...
This paper presents a method of predicting the maximum power capability of a Li-Ion battery, to be u...
In this study, the simultaneous use of a multi-level converter (MLC) as a DC-motor drive and as an a...
Driven by the needs to reduce the dependence of fossil fuels and the emissions of conventional vehic...
This paper presents a method of predicting the maximum power capability of a Li-Ion battery, to be u...