Lithium ferro phosphate (LiFePO4) has a promising battery technology with high charging/discharging behaviours make it suitable for electric vehicles (EVs) application. Battery state of charge (SOC) is a vital indicator in the battery management system (BMS) that monitors the charging and discharging operation of a battery pack. This paper proposes an electric circuit model for LiFePO4 battery by using particle filter (PF) method to determine the SOC estimation of batteries precisely. The LiFePO4 battery modelling is carried out using MATLAB software. Constant discharge test (CDT) is performed to measure the usable capacity of the battery and pulse discharge test (PDT) is used to determine the battery model parameters. Three parallel RC bat...
This study describes an online estimation of the model parameters and state of charge (SOC) of lithi...
This study describes an online estimation of the model parameters and state of charge (SOC) of lithi...
This paper proposes a low-complexity online state of charge estimation method for LiFePO4 battery in...
Lithium ferro phosphate (LiFePO4) has a promising battery technology with high charging/discharging ...
The paper presents a new approach for state estimation of lithium–iron phosphate batteries. Lithium-...
Throughout the past year, the development of Electric Vehicles (EVs) has been rapidly increasing due...
Battery energy storage management for electric vehicles (EV) and hybrid EV is the most critical and ...
The state of charge (SOC) is the residual capacity of a battery. The SOC value indicates the mileage...
Lithium iron phosphate (LiFePO4) batteries are widely used as power batteries for electric vehicle a...
International audienceIn this paper, a robust model-based battery state-of-charge (SOC) estimating a...
International audienceIn this paper, a robust model-based battery state-of-charge (SOC) estimating a...
© 2018 Elsevier Ltd Accurate battery state of charge (SOC) estimation can contribute to safe and rel...
The state of charge (SOC) is an important parameter for batteries, especially those for electric veh...
This paper proposes a low-complexity online state of charge estimation method for LiFePO4 battery in...
This paper proposes a low-complexity online state of charge estimation method for LiFePO4 battery in...
This study describes an online estimation of the model parameters and state of charge (SOC) of lithi...
This study describes an online estimation of the model parameters and state of charge (SOC) of lithi...
This paper proposes a low-complexity online state of charge estimation method for LiFePO4 battery in...
Lithium ferro phosphate (LiFePO4) has a promising battery technology with high charging/discharging ...
The paper presents a new approach for state estimation of lithium–iron phosphate batteries. Lithium-...
Throughout the past year, the development of Electric Vehicles (EVs) has been rapidly increasing due...
Battery energy storage management for electric vehicles (EV) and hybrid EV is the most critical and ...
The state of charge (SOC) is the residual capacity of a battery. The SOC value indicates the mileage...
Lithium iron phosphate (LiFePO4) batteries are widely used as power batteries for electric vehicle a...
International audienceIn this paper, a robust model-based battery state-of-charge (SOC) estimating a...
International audienceIn this paper, a robust model-based battery state-of-charge (SOC) estimating a...
© 2018 Elsevier Ltd Accurate battery state of charge (SOC) estimation can contribute to safe and rel...
The state of charge (SOC) is an important parameter for batteries, especially those for electric veh...
This paper proposes a low-complexity online state of charge estimation method for LiFePO4 battery in...
This paper proposes a low-complexity online state of charge estimation method for LiFePO4 battery in...
This study describes an online estimation of the model parameters and state of charge (SOC) of lithi...
This study describes an online estimation of the model parameters and state of charge (SOC) of lithi...
This paper proposes a low-complexity online state of charge estimation method for LiFePO4 battery in...