储能科学与技术 ›› 2020, Vol. 9 ›› Issue (3): 657-669.doi: 10.19799/j.cnki.2095-4239.2019.0263

• 未来科学城储能技术专刊 • 上一篇    下一篇

锂离子电池全生命周期内评估参数及评估方法综述

卢婷1,2(), 杨文强1   

  1. 1. 北京低碳清洁能源研究院,北京 102211
    2. 北京交通大学电气工程学院,北京 100044
  • 收稿日期:2019-11-15 修回日期:2020-03-01 出版日期:2020-05-05 发布日期:2020-05-11
  • 作者简介:卢婷(1984—),女,工程师,研究方向为微电网技术、储能技术应用、多能源综合系统,E-mail:20022036@chnenergy.com.cn

Review of evaluation parameters and methods of lithium batteries throughout its life cycle

LU Ting1,2(), YANG Wenqiang1   

  1. 1. National Institute of Clean-and-Low-Carbon Energy, Beijing 102211, China
    2. School of Electrical Engineering, Beijing Jiaotong University, Beijing 100044, China
  • Received:2019-11-15 Revised:2020-03-01 Online:2020-05-05 Published:2020-05-11

摘要:

自锂离子电池得到广泛应用以来,为实现锂离子电池性能的充分应用,从不同角度对其性能展开研究。准确描述电池内部工作原理,评估电池当前工作状态和性能,以及预测电池未来工作能力,是提高储能系统安全性、可靠性和可用性的重要基础。对锂离子电池的研究工作从内部原理出发,归纳整理锂离子电池的建模方法,对不同建模方法的优缺点进行分析对比;汇总整理可以表征电池当前工作状态、性能和未来工作能力的特性参数:荷电状态SOC、健康状态SOH以及剩余寿命RUL,并汇总分析预测该参数的计算思路及相关数学方法,通过分类归纳不同的解决思路和数学方法,分析其优缺点。通过上述工作,总结当前锂离子电池全生命周期内研究评估的工程实用性方法,并指出未来的研究方向和热点。

关键词: 锂离子电池, 建模方法, 荷电状态估计, 健康状态评估, 寿命预测, 全生命周期评估

Abstract:

The final goal is to make full use of lithium battery. In order to realize it, lithium battery performance has been studied from different perspectives since it has been widely used. It is an important foundations for improving the safety, reliability and availability of the energy storage system that include accurately describing internal working principle, evaluating the current operation state and predicting future working ability of battery. In order to achieve the final goal, the research work starts from internal principle study. After summarizing and arranging lithium battery modeling methods, it analyzes and compares the advantages and disadvantages of different modeling methods. Then it summarizes many characteristic parameters that can represent the current operation state, health state and future working ability of the battery, such as state of charge (SOC), state of health (SOH) and remaining useful life (RUL). This paper compares the advantages and disadvantages of many SOC traditional estimation methods. Then it point that SOC estimation method based on battery model is common application method. It summarizes the characteristics of mathematical algorithm used in SOC estimation method based on battery model, and point put different characteristic of these algorithm. Then it point out that the latest research hotspot is SOC estimation method based on fusion model, then explain its advantages and risks. For SOH evaluation method, it summarizes three different evaluation parameters and SOH estimating method based on different evaluation parameters. After summarizing and comparing, it is widely application engineering method to estimating SOH through impedance of equivalent circuit of battery model. And the hot research direction in the future is SOH estimation based on fusion model. Then it analyzes advantages and disadvantages of mathematical algorithm involved in different SOH estimation methods. This paper summarizes and classifies RUL estimation methods. After analyzing and comparing, the important methods are RUL based on empirical decay model and RUL based on artificial intelligence algorithm. Then it gives several mature cases based on empirical decay model and sorts out the research cases of RUL based on fusion model as future hotspot research. Through evaluation methods of different application stages in lithium battery life cycle, such as SOC, SOH and RUL, which can engineering practicability realize battery state evaluation, it provides accurate quantitative analysis basis for optimization useful of battery system.

Key words: lithium battery, modeling methods, state of charge, state of health, remaining useful life, full life cycle assessment

中图分类号: