We propose a method for dynamic model identification and parameter estimation of LiFePO4 cells based on current pulse measurements and electrochemical impedance spectroscopy (EIS). Modelling efforts were focused on diffusion as the predominant dynamic process relevant to battery management systems. An equivalent circuit model approach was adopted with parameters dependant on temperature and state of charge (SOC). The model was parameterised at 50°C, 20°C, 0°C and -30°C and between 10% and 100% SOC. Initial parameter estimations for the model identification procedure were informed by EIS. The model was validated (at constant SOC), for the entire temperature range and at C-rates between C/2 and 9C, by voltage simulation based on a dynamic dri...
An open circuit voltage-based model for state-of-health estimation of lithium-ion batteries is propo...
To improve the accuracy of the initial state-of-charge (SOCo) estimation, an enhanced SOC0 model-bas...
A computational efficient battery pack model with thermal consideration is essential for simulation ...
We propose a method for dynamic model identification and parameter estimation of LiFePO4 cells based...
lithium-ion battery We propose a method for dynamic model identification and parameter estimation of...
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...
Battery models are riddled with incongruous values of parameters considered for validation. In this ...
Lithium iron phosphate is a promising cathode material for the use in lithium-ion batteries meeting ...
Ambient temperature affects the performance of a battery power system and its accuracy in state-of-c...
To achieve accurate state-of-charge (SoC) estimation for LiFePO4 (lithium iron phosphate) batteries ...
To achieve accurate state-of-charge (SoC) estimation for LiFePO4 (lithium iron phosphate) batteries ...
AbstractWithin the framework of the development of an energy storage system for a lightweight electr...
In this thesis the modeling and simulation of a LiFePO4-based lithium-ion battery was presented. For...
This paper presents three equivalent thermal circuit models with multiple input parameters, namely, ...
An open circuit voltage-based model for state-of-health estimation of lithium-ion batteries is propo...
To improve the accuracy of the initial state-of-charge (SOCo) estimation, an enhanced SOC0 model-bas...
A computational efficient battery pack model with thermal consideration is essential for simulation ...
We propose a method for dynamic model identification and parameter estimation of LiFePO4 cells based...
lithium-ion battery We propose a method for dynamic model identification and parameter estimation of...
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...
Battery models are riddled with incongruous values of parameters considered for validation. In this ...
Lithium iron phosphate is a promising cathode material for the use in lithium-ion batteries meeting ...
Ambient temperature affects the performance of a battery power system and its accuracy in state-of-c...
To achieve accurate state-of-charge (SoC) estimation for LiFePO4 (lithium iron phosphate) batteries ...
To achieve accurate state-of-charge (SoC) estimation for LiFePO4 (lithium iron phosphate) batteries ...
AbstractWithin the framework of the development of an energy storage system for a lightweight electr...
In this thesis the modeling and simulation of a LiFePO4-based lithium-ion battery was presented. For...
This paper presents three equivalent thermal circuit models with multiple input parameters, namely, ...
An open circuit voltage-based model for state-of-health estimation of lithium-ion batteries is propo...
To improve the accuracy of the initial state-of-charge (SOCo) estimation, an enhanced SOC0 model-bas...
A computational efficient battery pack model with thermal consideration is essential for simulation ...