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Method for Dimensioning Battery and Thermal Management Systems for Heavy-Duty Vehicle Applications Using Aged Battery Experimental Data and Advanced Modelling Techniques

机译:使用老化电池实验数据和高级建模技术的重型车辆应用尺寸电池和热管理系统的方法

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During the life of a Li-Ion battery, capacity and power capability fade. Despite this degradation, an electric vehicle battery needs to deliver designed power performance until battery end-of-life. Comprehension of battery performance degradation is required to design sufficient margin for power capability and thermal management. This paper proposes battery laboratory testing combined with advanced modelling techniques to obtain design parameters based on aged batteries. Laboratory cell aging and characterization tests are performed to parametrise models, which are used to verify electric city bus battery performance at various lifetime levels. The modelling gives an indication on the level of margin that needs to be designed for power capability and thermal management. The results obtained indicate that from performance point of view, the battery that was studied can be utilized well beyond 80% capacity point while still retaining power capability and low cell level power losses.
机译:在锂离子电池的寿命期间,容量和功率能力褪色。尽管如此,尽管如此,电动汽车电池需要为电池端寿命提供设计的电源性能。需要理解电池性能劣化,以设计足够的功率能力和热管理。本文提出了电池实验室检测与先进的建模技术相结合,以获得基于老化电池的设计参数。实验室细胞老化和表征测试对参数化模型进行,用于验证各种寿命水平的电城市总线电池性能。该建模在需要设计用于功率能力和热管理的边距级别的指示。获得的结果表明,从性能的角度来看,所研究的电池可以很好地利用超过80%的容量点,同时仍然保持功率能力和低电池级功率损耗。

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