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中国物理学会期刊

锂离子动力电池电化学建模进展及降阶方法研究

CSTR: 32037.14.aps.74.20250591

Research on electrochemical modeling and order reduction methods for lithium-ion power batteries

CSTR: 32037.14.aps.74.20250591
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  • 动力电池作为新能源汽车的核心动力装置, 其精准建模对于动力电池的运行状态估计、全生命周期故障诊断、多工况安全管控等具有重要意义. 以P2D(pseudo-two-dimensions)模型为代表的电化学模型作为能从微观尺度表征电池内部电化学反应过程的机理模型, 其对于动力电池的老化、生热行为的准确描述是电池单体容量衰减、内阻增大、受热不均以及电池模组性能不一致评价的重要依据. 本文梳理了目前锂离子动力电池电化学建模的最新研究进展, 剖析了电化学模型与等效电路模型、老化模型、热模型的耦合方法及应用现状, 重点针对电化学模型的参数繁多且辨识困难的问题, 对比分析了单粒子模型、带液相单粒子模型、电化学平均值模型、固液相重构模型、一维电化学模型等动力电池电化学模型降阶方法的优势与不足, 指出了电化学模型降阶表征的关键难点, 并对电化学模型降阶重构方法的研究趋势进行了展望, 以期为动力电池电化学模型的降阶重构研究指明方向.

     

    As the core power unit of new energy vehicles, the accurate modeling of power batteries is of great significance for evaluating their operating status, diagnosing faults throughout their lifecycle, and ensuring safety control under multiple operating conditions. The electrochemical model represented by the P2D model serves as a mechanistic model that can characterize the internal electrochemical reaction process of batteries on a microscale. Its accurate description of the aging and heating behavior of power batteries is an important basis for evaluating the capacity degradation, increase in internal resistance, uneven heating, and inconsistent performance of battery modules. The paper summarizes the latest advances in electrochemical modeling of lithium-ion power batteries, analyzes the coupling methods and application status of electrochemical models with equivalent circuit models, aging models, and thermal models, and focuses on the problem of numerous parameters and difficult identification of electrochemical models. In this paper, the advantages and disadvantages of the single particle model, single particle model with electrolyte, electrochemical mean model, solid-liquid phase reconstruction model, one-dimensional electrochemical model and other methods are compared with each other and analyzed for reducing the order of power battery electrochemical models, the key difficulties in characterizing electrochemical model order reduction are pointed out, and the research trends of electrochemical model reduction order reconstruction methods are prospected, in order to provide direction for the research on electrochemical model reduction order reconstruction of power batteries.

     

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