Although the second use of retired electric vehicle batteries in stationary energy storage systems (second life) is ecologically reasonable, it is hindered economically because of the costs for battery state determination after the vehicle use and the uncertainties about the remaining useful life. Therefore, a method for a server coupled, model-based battery parameter determination and prediction (SMP method) is investigated and implemented in this thesis. It enables the continuous capturing of the batteries’ state and based on that the prediction of the aging behavior and remaining useful life for various applications.
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Although the second use of retired electric vehicle batteries in stationary energy storage systems (second life) is ecologically reasonable, it is hindered economically because of the costs for battery state determination after the vehicle use and the uncertainties about the remaining useful life. Therefore, a method for a server coupled, model-based battery parameter determination and prediction (SMP method) is investigated and implemented in this thesis. It enables the continuous capturing of...
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