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Assessment of Simplifications to a Pseudo-2D Electrochemical Model of Li-ion Batteries

机译:锂离子电池伪2D电化学模型的简化评估

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Lithium-ion batteries are ubiquitous in modern society. Their high power and energy density compared to other forms of electrochemical energy storage make them very popular in a wide range of applications [1]. To ensure safe, prolonged, and reliable operations, significant research effort has been put into understanding, modelling, and predicting the key limiting phenomena, which has led to various battery models with different levels of complexity and prediction capabilities [2]. This work focuses on implementing the pseudo-two-dimensional (P2D) model, the most widely accepted electrochemical model on lithium-ion batteries. The unparalleled prediction abilities of the P2D model, however, are over shadowed by its high complexity. Thus, much of this work focuses on model reduction to shorten effective simulation time. In the end, four model reductions have been identified and successfully implemented. Comparisons to the full model at 1C, 2C and 5C discharge rates are reported.
机译:锂离子电池在现代社会中普遍存在。 与其他形式的电化学能量存储相比,它们的高功率和能量密度使得它们在各种应用中非常流行[1]。 为确保安全,长时间,可靠的操作,重大研究努力已经掌握了理解,建模和预测关键限制现象,这导致了各种电池模型,具有不同程度的复杂性和预测能力[2]。 这项工作侧重于实施伪二维(P2D)模型,是锂离子电池上最广泛接受的电化学模型。 然而,P2D模型的无与伦比的预测能力被其高复杂性遮蔽了阴影。 因此,大部分工作侧重于模型减少以缩短有效的模拟时间。 最后,已经确定并成功实施了四种模型减少。 报告了对1C,2C和5C放电速率的完整模型的比较。

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