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Numerical and Experimental Validation of a LiFeP04 Battery Model at Steady State and Transient Operations

机译:稳态和瞬态操作中LiFep04电池模型的数值和实验验证

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In the paper some of the battery models proposed in literature are analysed in order to predict the battery performance and, then, make sure that the Battery Management System (BMS) that is a key component to check and control the status of the batteries within their specified safe operating conditions, works in best conditions. In fact to reach an extended battery lifetime and increase the reliability of the system, is necessary to guarantee an accurate evaluation of the state of the whole stack of batteries to track their operations. Therefore, an accurate battery model that captures the dynamics of the battery is required. Lithium batteries are in particular considered because of their high energy density and long lifetime that make them increasingly used in systems such as electric vehicles, space and aircraft power systems and in the energy storage systems for distributed generation systems. In the paper the most interesting models of batteries proposed in literature are analysed and compared with the RC model of battery by means of numerical and experimental testing. The results are discussed in the paper.
机译:在论文中,分析了一些文献中提出的电池模型,以便预测电池性能,然后,确保电池管理系统(BMS)是检查和控制其内容的电池状态的关键组件指定的安全操作条件,在最佳条件下工作。事实上,为了达到扩展的电池寿命并提高系统的可靠性,是为了保证对整个电池的状态进行准确评估,以跟踪其操作。因此,需要一种捕获电池动态的精确电池模型。锂电池尤其考虑,因为它们的高能量密度和长寿命,使它们越来越多地用于电动车辆,空间和飞机动力系统等系统以及分布式发电系统的能量存储系统中。在论文中,通过数值和实验测试,分析了文献中提出的最有趣的电池模型,并与电池的RC模型进行了比较。结果是本文讨论的。

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