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Lithium-Ion Battery Cell Cycling and Usage Analysis in a Heavy-Duty Truck Field Study

机译:重型卡车现场研究中锂离子电池的循环与使用分析

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摘要

This paper presents results from a field test performed on commercial power-optimized lithium-ion battery cells cycled on three heavy-duty trucks. The goal with this study was to age battery cells in a hybrid electric vehicle (HEV) environment and find suitable methods for identifying cell ageing. The battery cells were cycled on in-house developed equipment intended for testing on conventional vehicles by emulating an HEV environment. A hybrid strategy that allows battery usage to vary within certain limits depending on driving patterns was used. This concept allows unobtrusive and low-cost testing of battery cells under realistic conditions. Each truck was equipped with one cell cycling equipment and two battery cells. One cell per vehicle was cycled during the test period while a reference cell on each vehicle experienced the same environmental conditions without being cycled. Differential voltage analysis and electrochemical impedance spectroscopy were used to identify ageing of the tested battery cells. Analysis of driving patterns and battery usage was performed from collected vehicle data and battery cell data.
机译:本文介绍了对在三辆重型卡车上循环使用的商用功率优化锂离子电池单元进行的现场测试的结果。这项研究的目的是在混合动力汽车(HEV)环境中老化电池,并找到合适的方法来识别电池老化。电池单元在内部开发的设备上循环使用,该设备旨在通过模拟HEV环境在常规车辆上进行测试。使用了一种混合策略,该策略允许电池使用量根据行驶模式在一定限制内变化。该概念允许在实际条件下对电池进行不干扰和低成本的测试。每辆卡车都配备了一个电池循环设备和两个电池单元。在测试期间,每辆车循环一个电池,而每辆车上的参考电池经历相同的环境条件而没有循环。差动电压分析和电化学阻抗谱用于确定测试电池的老化。根据收集的车辆数据和电池数据对驾驶模式和电池使用情况进行分析。

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