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Model-Based Dynamic Power Assessment of Lithium-Ion Batteries Considering Different Operating Conditions

机译:考虑不同运行条件的基于模型的锂离子电池动态功率评估

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This paper is concerned with model-based dynamic peak-power evaluation for LiNMC and $hbox{LiFePO}_{4}$ batteries under different operating conditions. The battery test and our prior study on linear-parameter-varying (LPV) battery modeling are briefly introduced. The peak-power estimation method that incorporates an explicit prediction horizon and design constraints on the battery current, voltage, and SOC are elaborated, and its computational load is analyzed. The discharge and charge peak powers are quantitatively assessed under different dynamic characterization tests, in which a comparison with the conventional PNGV-HPPC method and approaches using the less accurate models is conducted. The robustness of the peak-power estimation approach against varying battery temperatures and aging levels is investigated. The methods to improve the credibility of the peak-power assessment in the context of battery degradation are explored.
机译:本文涉及LiNMC和 $ hbox {LiFePO} _ {4} $ 的基于模型的动态峰值功率评估。电池在不同的工作条件下。简要介绍了电池测试和我们对线性参数变化(LPV)电池建模的研究。阐述了一种峰值功率估计方法,该方法结合了明确的预测范围和对电池电流,电压和SOC的设计约束,并分析了其计算负荷。在不同的动态特性测试中,对放电和充电峰值功率进行了定量评估,其中与使用较不精确模型的常规PNGV-HPPC方法和方法进行了比较。研究了峰值功率估计方法针对变化的电池温度和老化水平的鲁棒性。探索了在电池性能下降的情况下提高峰值功率评估可信度的方法。

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