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A Thermodynamic Model for Lithium-Ion Battery Degradation: Application of the Degradation-Entropy Generation Theorem

机译:锂离子电池降解的热力学模型:降解熵产生定理的应用

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Presented is a lithium-ion battery degradation model, based on irreversible thermodynamics, which was experimentally verified, using commonly measured operational parameters. The methodology, applicable to all lithium-ion batteries of all chemistries and composition, combined fundamental thermodynamic principles, with the Degradation–Entropy Generation theorem, to relate instantaneous capacity fade (loss of useful charge-holding capacity) in the lithium-ion battery, to the irreversible entropy generated via the underlying dissipative physical processes responsible for battery degradation. Equations relating capacity fade—aging—to battery cycling were also formulated and verified. To show the robustness of the approach, nonlinear data from abusive and inconsistent battery cycling was measured and used to verify formulations. A near 100% agreement between the thermodynamic battery model and measurements was achieved. The model also gave rise to new material and design parameters to characterize all lithium-ion batteries.
机译:提出了一种基于不可逆热力学的锂离子电池退化模型,该模型已使用常用测量的运行参数进行了实验验证。该方法适用于所有化学性质和成分的所有锂离子电池,结合了基本的热力学原理和降解熵原理,将锂离子电池的瞬时容量衰减(有用的电荷保持容量的损失)联系在一起,通过导致电池退化的潜在耗散物理过程产生的不可逆熵。还制定和验证了与电池循环有关的容量衰减和老化的方程式。为了显示该方法的鲁棒性,对来​​自滥用和不一致的电池循环的非线性数据进行了测量,并用于验证配方。热力学电池模型与测量结果之间的一致性接近100%。该模型还提出了新的材料和设计参数,以表征所有锂离子电池。

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