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Interpreting and Extending an Analytical Battery Model Using an Iterative Computation Method

Bangalore(2007)

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Abstract
In this paper, we present an iterative computing method to illustrate the discharge, recovery and charge process of general lithium/lithium-ion batteries. The discharge and recovery processes correspond well to an existing accurate analytical battery model: the RV- W's analytical model, and thus interpret this model algorithmically. Our method also extends R-V-W's model to accommodate the charge process. The work will help the system designers to grasp the characteristics of R-V-W's battery model. Experiments are performed on a variety of load profiles to show the accuracy of the extended model by comparing the predicted charge time with that derived from the DUALFOIL simulations.
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Key words
iterative computing method,extended model,analytical battery model,dualfoil simulation,charge time,model algorithmically,analytical model,iterative computation method,battery model,existing accurate analytical battery,charge process,lithium-ion battery,iterative methods,system design
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