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Real-Time Estimation of Temperature Distribution for Cylindrical Lithium-Ion Batteries Under Boundary Cooling

机译:圆柱形锂离子电池边界冷却下温度分布的实时估算

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摘要

This paper presents a real-time estimation method for the temperature distribution of cylindrical batteries under boundary air cooling. A space-/time-separation-based analytical model is developed using Karhunen–Loève decomposition and Galerkin's method. The model parameters can be identified and optimized using data-based approaches. The developed analytical model demonstrates the robustness to variation of thermal parameters. However, the change of boundary cooling will significantly degrade the performance of the developed analytical model. For the known boundary cooling, the compensation model for cooling effects can be derived to improve the modeling performance. For the unknown boundary cooling in real practice, a dual-extended Kalman filter can be used to simultaneously estimate coupled parameters and convection coefficient in the compensation model. The proposed method can achieve satisfactory performance in the battery duty-cycle experiments.
机译:本文提出了一种边界空气冷却条件下圆柱电池温度分布的实时估计方法。使用Karhunen-Loève分解和Galerkin方法开发了基于时空分离的分析模型。可以使用基于数据的方法来识别和优化模型参数。开发的分析模型证明了热参数变化的鲁棒性。但是,边界冷却的变化将大大降低已开发分析模型的性能。对于已知的边界冷却,可以导出冷却效果的补偿模型以改善建模性能。对于实际实践中未知的边界冷却,可以使用双扩展卡尔曼滤波器同时估算补偿模型中的耦合参数和对流系数。所提出的方法可以在电池占空比实验中取得令人满意的性能。

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