Improvement of accuracy of multi-scale models of Li-ion batteries by applying operator splitting techniques

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摘要

In this work operator splitting techniques have been applied successfully to improve the accuracy of multi-scale Lithium-ion (Li-ion) battery models. A slightly simplified Li-ion battery model is derived, which can be solved on one time scale and multiple time scales. Different operator splitting schemes combined with different approximations are compared with the non-splitted reference solution in terms of stability, accuracy and processor cost. It is shown, that the reverse Strang–Marchuk splitting combined with the implicit scheme to solve the diffusion operator and Newton method to approximate the non-linear source term can improve the accuracy of the commonly applied vertical (sequential) multi-scale models by almost 3 times without considerably increasing the processor cost.

论文关键词:Numerical model,Operator splitting,Time discretization,Newton iteration,Li-ion battery,Multi-scale modeling

论文评审过程:Received 26 January 2016, Revised 22 March 2016, Available online 4 April 2016, Version of Record 8 September 2016.

论文官网地址:https://doi.org/10.1016/j.cam.2016.03.029