2015
DOI: 10.1149/2.0541509jes
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Parameterization of a Physico-Chemical Model of a Lithium-Ion Battery

Abstract: To draw reliable conclusions about the internal state of a lithium-ion battery or about ageing processes using physico-chemical models, the determination of the correct set of input parameters is crucial. In the first part of this publication, the complete set of material parameters for model parameterization has been determined by experiments for a 7.5 Ah cell produced by Kokam. In this part of the publication, the measured set of parameters is incorporated into a physico-chemical model. Model results are com… Show more

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Cited by 106 publications
(122 citation statements)
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“…For battery electrolytes, concentrated solution theory holds, but the Einstein relation is considered as an approximation here. As comparison with values from literature, derived using concentrated solution theory, as well as the simulation validation in 12 show, this approximation seems to be justified for the material and the currents up to 5 C considered in this work. Further technics to characterize electrolytes using concentrated solution theory are described in.…”
Section: Model-parameterizationsupporting
confidence: 70%
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“…For battery electrolytes, concentrated solution theory holds, but the Einstein relation is considered as an approximation here. As comparison with values from literature, derived using concentrated solution theory, as well as the simulation validation in 12 show, this approximation seems to be justified for the material and the currents up to 5 C considered in this work. Further technics to characterize electrolytes using concentrated solution theory are described in.…”
Section: Model-parameterizationsupporting
confidence: 70%
“…The methods are summarized and discussed for effective parameter determination. The measured values can be found in summary in the second part of this publication, 12 where they are applied and validated in a physico-chemical model. The parameters have been compared with existing literature values.…”
Section: Discussionmentioning
confidence: 99%
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“…The exchanging charge between the layers inside the battery characterizes the recovery/redistribution effects during relaxation phases (e.g., [8], [9]). In order to account for the so-called charge redistribution, in [10] it has proposed to use a virtual current generator ( vir I ) which wave shape and behavior has been suitably defined to match the long-term charge diffusion in the battery.…”
Section: B Two-time Constants Model (Ttc)mentioning
confidence: 99%