基于城市真实驾驶数据的驾驶方式对电动汽车电池组荷电状态不一致性影响研究

IF 11 1区 工程技术 Q1 ENERGY & FUELS
Lin Hu , Jiangluo Chen , Jing Huang , Qingtao Tian , Maitane Berecibar , Changfu Zou
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引用次数: 0

摘要

电池单体间的SOC不一致会影响电池组的可用容量、功率输出、寿命和安全性。因此,分析SOC不一致性是必要的。由于不同的驾驶风格涉及加速和制动行为的显著差异,它们会影响充放电电流的大小和频率,从而加剧不一致性。为了研究驾驶风格差异对电池组SOC不一致性的影响,本研究首先进行了实车实验,收集了66组代表不同驾驶风格的电动汽车驾驶数据。然后,以实车试验采集的电流数据作为仿真输入,建立电池组模型。基于不同驾驶方式下的充放电电流大小和充电频率,进一步分析了驾驶行为对电池组不一致性的影响。此外,提出了动态不一致性度量来描述电池组内部参数不一致性的时间演变。结果表明,由于驾驶条件的差异,电池组的电流大小和充电频率也会发生变化,从而导致不同程度的SOC不一致。此外,不同驾驶方式对荷电状态不一致性的影响随电池组初始状态的不同而不同,在库仑效率和自放电率不一致的情况下,激进驾驶的荷电状态不一致性最高,而谨慎驾驶的荷电状态一致性最好。然而,在温度不一致的情况下,这种趋势是相反的。本研究阐明了不同初始条件和驾驶风格下SOC不一致性的变化规律,为设计适合特定驾驶风格的电动汽车智能均衡策略提供了有益的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on the impact of driving styles on EV battery pack SOC inconsistency based on real urban driving data
The SOC inconsistency among battery cells affects the available capacity, power output, lifespan, and safety of battery packs. Therefore, analyzing SOC inconsistency is essential. Since different driving styles involve significant variations in acceleration and braking behaviors, they influence the magnitude and frequency of charging and discharging currents, thereby intensifying inconsistency. To investigate the impact of driving style differences on battery pack SOC inconsistency, this study first conducted real-vehicle experiments, collecting 66 sets of electric vehicle driving data representing various driving styles. Then, a battery pack model was established, with the current data collected from real-vehicle experiments used as input for simulation. Based on the charge-discharge current magnitude and charging frequency under different driving styles, the impact of driving behavior on battery pack inconsistency was further analyzed. In addition, dynamic inconsistency metrics were proposed to describe the temporal evolution of parameter inconsistency within the battery pack. Results show that due to differences in driving conditions, the battery pack experiences varying current magnitudes and charging frequencies, leading to different levels of SOC inconsistency. Moreover, the influence of driving styles on SOC inconsistency varies with initial state of the battery pack: under inconsistent Coulomb efficiency and self-discharge rates, aggressive driving results in the highest inconsistency, while cautious driving shows the best consistency. However, under temperature inconsistency, this trend is reversed. This study clarifies the variation patterns of SOC inconsistency under different initial conditions and driving styles, offering useful insights for designing intelligent equalization strategies adapted to specific driving styles in electric vehicles.
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来源期刊
Applied Energy
Applied Energy 工程技术-工程:化工
CiteScore
21.20
自引率
10.70%
发文量
1830
审稿时长
41 days
期刊介绍: Applied Energy serves as a platform for sharing innovations, research, development, and demonstrations in energy conversion, conservation, and sustainable energy systems. The journal covers topics such as optimal energy resource use, environmental pollutant mitigation, and energy process analysis. It welcomes original papers, review articles, technical notes, and letters to the editor. Authors are encouraged to submit manuscripts that bridge the gap between research, development, and implementation. The journal addresses a wide spectrum of topics, including fossil and renewable energy technologies, energy economics, and environmental impacts. Applied Energy also explores modeling and forecasting, conservation strategies, and the social and economic implications of energy policies, including climate change mitigation. It is complemented by the open-access journal Advances in Applied Energy.
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