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Lithium-Ion Cell Empirical Efficiency Maps

机译:锂离子电池经验效率图

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In lithium-ion cells, heat is generated via joules losses and exothermic electro-chemical reactions, causing cells to self-heat and risk premature aging or catastrophic failure. However, heat generation is not constant throughout the cells discharge, due to the complex chemical reactions and changes in the micro structure of the active materials of the electrodes. Non-linear or complex systems thermodynamic behavior is commonly represented by efficiency maps, generated from empirical data. These empirical models are used to estimate a system heat generation at a given operating state. Although very common in many fields of engineering, efficiency maps are yet to be used for lithium-ion batteries. This paper presents a simple method to achieve accurate estimation of thermodynamic efficiency over the full range of use. In this method, the thermodynamic losses are assumed to be proportional to the measured ohmic resistance of the cell. This empirical method is intended to be a fast and reliable characterization tool that can replace other modeling methods, while capturing the non- linear nature of lithium-ion cells. It can be used for energy management and assessment purposes, for battery design or for thermal management system sizing and control.
机译:在锂离子电池中,热量是通过焦耳损失和放热的电化学反应产生的,从而导致电池自热,并有过早老化或灾难性故障的危险。然而,由于复杂的化学反应和电极活性材料的微观结构的变化,在整个电池放电过程中热量的产生不是恒定的。非线性或复杂系统的热力学行为通常由根据经验数据生成的效率图表示。这些经验模型用于估算给定运行状态下的系统热量。尽管在许多工程领域中非常普遍,但效率图尚未用于锂离子电池。本文提出了一种简单的方法,可以在整个使用范围内实现对热力学效率的准确估算。在这种方法中,假定热力学损耗与电池的测量欧姆电阻成正比。这种经验方法旨在成为一种快速可靠的表征工具,可以替代其他建模方法,同时捕获锂离子电池的非线性特性。它可以用于能源管理和评估目的,用于电池设计或用于热管理系统的大小确定和控制。

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