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- W2904659318 abstract "This paper presents the new model of LiFePO4- battery dedicated to multi-source systems such as the transport applications or that of the renewables energies. Generally, an application needs a specific model of the battery which takes in to account the real constraints of the using such as the battery State Of Charge, the number of charge/discharge cycle, the DC- current magnitude and its frequency. These physical constraints affect the electric parameters of a lithium-battery. In others terms, the presented physical constraints in above reduce the battery capacitance and they increase the internal resistances.The paper contribution is focused on the proposed model of the LiFePO4-battery with a new method for electric parameters extraction. The specificity of this model is due to the parameters of the parallel circuits that are function of the battery’s open circuit voltage which depends on the state of charge of the battery and the series resistance according to the DC-current ripples frequency. The proposed model of the lithium iron phosphate include two different time constants which are constant during all operations. To do the battery characterization and modeling, the experimental tests based on the battery charge/discharge operations with the fluctuating DC-current are done. From experimental data of the battery, the equivalent- electric circuit parameters are computed. To show the performances of the proposed model, the simulations results are compared to experimental ones obtained with a dynamic current profile." @default.
- W2904659318 created "2018-12-22" @default.
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- W2904659318 date "2018-10-01" @default.
- W2904659318 modified "2023-09-26" @default.
- W2904659318 title "Characterization and Electric Behavior Modeling of Lithium- Battery using Temporal Approach for Parameters Computing" @default.
- W2904659318 doi "https://doi.org/10.1109/icrera.2018.8566742" @default.
- W2904659318 hasPublicationYear "2018" @default.
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