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PDE battery model simplification for charging strategy evaluation

机译:简化PDE电池模型以评估充电策略

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A safe, fast charging strategy is desired in the utilisation of rechargeable Lithium-ion batteries. Traditionally, experimental methods are used in exploring and evaluating new strategies, but these require extensive time and cost. This paper aims to establish a model-based system for quick and accurate evaluation of charging strategies. Starting from a nonlinear coupled partial differential equation (PDE) battery model that accurately captures system dynamics, simplification techniques are conducted based on the identification of separable time scales within the states. By pertinent use of a singular perturbation approach, a PDE model simplification framework containing families of simplified battery models is established. All assumptions are explicitly stated and shown to enable families of simplified models to be rigorously justified. An evaluation procedure synthesised from the simplified models and averaging theory is proposed. This procedure is implemented on several typical battery charging strategies. The benefits relative to simulation on other higher order models are assessed in terms of computational efficiency and accuracy and demonstrate significant computational savings are possible with the proposed approach.
机译:在使用可再充电锂离子电池中,需要一种安全,快速的充电策略。传统上,实验方法用于探索和评估新策略,但是这些方法需要大量的时间和成本。本文旨在建立一个基于模型的系统,用于快速,准确地评估充电策略。从可精确捕获系统动力学的非线性耦合偏微分方程(PDE)电池模型开始,基于对状态内可分离时间刻度的识别,进行了简化技术。通过使用奇异摄动方法,建立了包含简化电池模型系列的PDE模型简化框架。明确陈述并显示了所有假设,以使严格的简化模型系列具有合理性。提出了一种基于简化模型和平均理论的综合评价程序。此过程在几种典型的电池充电策略上实施。在计算效率和准确性方面评估了相对于在其他更高阶模型上进行仿真的好处,并证明了所提出的方法可以节省大量计算量。

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