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储能系统技术
★ 5.0
基于扩展Ragone图的锂离子电池单元在受限工作范围内的性能表征
Performance characterization of lithium-ion battery cells within restricted operating range using an extended ragone plot
| 作者 | Sven Wiegelman · Astrid Bensman · Richard Hanke Rauschenbach |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 389 卷 |
| 技术分类 | 储能系统技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Characterization of commercial battery cells at different end-of-charge voltages. |
语言:
中文摘要
摘要 锂离子电池系统在从电动汽车到电网储能的各种应用中发挥着关键作用,但其性能在不同运行条件下可能表现出显著差异。尽管已有大量研究探讨了电池主要性能指标——能量与功率——在制造商允许限值范围内的非线性关系,但对于在受限范围内运行的影响至今尚未得到充分研究。限制可用的工作范围,特别是上限电压,在具有严苛环境条件的特定应用中可能是有利的,甚至是必要的,可在不显著牺牲性能的前提下提升安全性、效率、兼容性和使用寿命。为了研究这一权衡关系,本文通过实验对三种不同封装形式和化学体系的电池单元进行了基于功率的性能表征,并利用扩展Ragone图进行分析。为减少实验工作量,我们提出一种基于重构的方法,通过根据先前充电终止条件裁剪全范围数据集,重新计算任意电压初始限制下的Ragone图。在实际相关范围内,测量所得与重构Ragone曲线之间的偏差保持在≤3%以内,并通过电学与热学评估加以验证。通过叠加设定上下工作限值,扩展Ragone图能够在无需额外电池表征测试的情况下,实现对受限运行范围内电池性能的评估。因此,本研究提供了一种实用且高效的方法,可为工程师和研究人员在选择、设计或管理面向特定应用的能量存储系统时提供理想支持。
English Abstract
Abstract Lithium-ion battery systems play a crucial role in applications ranging from electric vehicles to grid storage, but their performance can vary significantly under different operating conditions. While extensive research has explored the non-linear relationship of the battery’s key performance metrics – energy and power – across the manufacturers’ permissible limits, the impacts of operating in a restricted range have not yet been sufficiently investigated. Restricting the available operating range, particularly the upper voltage limit, may be advantageous or even necessary for specific applications with harsh environmental conditions, potentially enhancing safety, efficiency, compatibility, and lifespan without substantially compromising performance. In order to investigate this trade-off, the power-based performance of three battery cells with different formats and chemistries is experimentally characterized and analyzed using an extended Ragone plot. To reduce experimental effort, we demonstrate a reconstruction-based approach to recalculate the Ragone plot for arbitrary voltage initialization limits by trimming the full-range dataset based on the preceding charge termination conditions. In the practically relevant range, deviations between the measured and reconstructed Ragone curves remain within ≤ 3 % , validated by an electrical and thermal assessment. By superimposing upper and lower operating limits, the extended Ragone plot enables an evaluation of battery performance under a restricted range without additional cell characterization measurements. Our findings thus provide a practical and efficient method for engineers and researchers, ideally supporting the decision-making in selecting, designing, or managing battery systems for application-specific energy storage solutions.
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SunView 深度解读
该研究对阳光电源ST系列储能系统和PowerTitan产品具有重要应用价值。通过限制锂电池工作电压范围可提升安全性和寿命,这与我们储能PCS的电池管理策略高度契合。扩展Ragone图方法可优化我们的BMS算法,在不同应用场景(如高温环境的工商业储能、电网侧调频)下动态调整SOC窗口,平衡功率性能与循环寿命。该重构方法可减少现场测试工作量,支持iSolarCloud平台的预测性维护功能,为客户提供更精准的容量衰减预测和运维策略优化。