首页> 外文期刊>Applied Energy >Effects of alternating current on Li-ion battery performance: Monitoring degradative processes with in-situ characterization techniques
【24h】

Effects of alternating current on Li-ion battery performance: Monitoring degradative processes with in-situ characterization techniques

机译:交流电流对锂离子电池性能的影响:监测具有原位特征技术的降解过程

获取原文
获取原文并翻译 | 示例
       

摘要

With the rapidly growing markets for electric vehicles and renewable energy systems, the complex duty cycles imposed by electric machines and power electronics components are now a common feature of battery service. As a result, lithium-ion, increasingly the battery of choice, must cope with superimposed alternating current (AC) across a broad range of frequencies. To advance understanding of how AC may influence the ageing of Li-ion batteries (LIBs), this work uses electrochemical impedance spectroscopy to investigate the interaction of AC with key aspects of LIB operation (charge-transfer, properties of the solid electrolyte interphase, and lithium-ion diffusion), along with analysis of capacity performance to quantify the main modes of degradation. For a set of fresh LiFePO4 cells, subjected to nearly 200 days of service, comparison of DC profile with coupled DC + AC duty reveals that high-frequency superimposed AC does not contribute to ageing, with some evidence that it can actually enhance the battery life. In contrast, low-frequency superimposed AC accelerates both loss of lithium inventory and loss of active material (as the most pertinent degradation modes of LIBs) and consequently induces greater capacity loss. This important correlation between AC frequency and extent of degradation was confirmed in AC-only studies, which showed that the voltage polarization induced by AC perturbation is the key indicator of any likely effect. These findings can serve as a guide for deciding whether a given combination of frequencies and amplitudes is likely to have an adverse impact.
机译:随着电动汽车和可再生能源系统的快速增长的市场,电机和电力电子元件施加的复杂占空比现在是电池服务的共同特征。结果,锂离子,越来越多的选择电池,必须应对跨越广泛的频率的叠加的交流电流(AC)。为了推进AC如何影响锂离子电池(LIBS)的老化,这项工作采用电化学阻抗光谱来研究AC的相互作用与Lib操作的关键方面(电荷转移,固体电解质间的性质,和锂离子扩散),随着容量性能的分析,可以量化劣化的主要劣化模式。对于一组新鲜的LiFepo4细胞,经受近200天的服务,DC简档与耦合DC + AC的比较显示,高频叠加的AC没有贡献老化,有一些证据表明它实际上可以提高电池寿命。相比之下,低频叠加的AC加速损耗锂库存和活性物质的丧失(作为Libs最相关的劣化模式),因此诱导更大的容量损耗。在仅AC的研究中确认了AC频率与降解程度之间的这种重要相关性,表明AC扰动引起的电压偏振是任何可能效果的关键指标。这些发现可以用作决定给定的频率和振幅组合是否可能产生不利影响。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号