Modelling of lithium-ion battery for online energy management systems

被引:29
|
作者
Chen, S. X. [1 ]
Gooi, H. B. [1 ]
Xia, N. [1 ]
Wang, M. Q. [1 ]
机构
[1] Nanyang Technol Univ, Sch Elect & Elect Engn, Singapore, Singapore
关键词
D O I
10.1049/iet-est.2012.0008
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This study presents a new equivalent lithium-ion (Li-ion) battery model for online energy management system. It has an equilibrium potential E and an equivalent internal resistance Rint. The equilibrium potential E is expressed as a function of state-of-charge (SOC), current and temperature. The equivalent internal resistance Rint includes R-1 and R-2. R-1 is defined as the resistance, which can be formulated by the discharging current and temperature. R-2 is defined as the resistance which is because of the change of temperature. The adaptive extended Kalman filter is employed to implement the online energy management system based on the proposed Li-ion battery model. The SOC is considered as the state variable for the charging or discharging process of the Li-ion battery. The covariance parameters of the processing noise and observation errors are updated adaptively. The SOC of the Li-ion battery can be predicted by the online measured voltage and current in the online energy management system. The effectiveness and robustness of the proposed Li-ion battery model is validated. Experimental results show that the estimated SOC is accurate for various operating conditions. A comparison between the proposed method and other SOC estimation methods is also shown in the experimental results and analysis section.
引用
收藏
页码:202 / 210
页数:9
相关论文
共 50 条
  • [1] Lithium-ion battery modelling for the energy management problem of microgrids
    Tenfen, Daniel
    Finardi, Erlon C.
    Delinchant, Benoit
    Wurtz, Frederic
    IET GENERATION TRANSMISSION & DISTRIBUTION, 2016, 10 (03) : 576 - 584
  • [2] Dimensional analysis and modelling of energy density of lithium-ion battery
    Kwasi-Effah, Collins C.
    Rabczuk, Timon
    JOURNAL OF ENERGY STORAGE, 2018, 18 : 308 - 315
  • [3] Lithium-Ion Battery Systems
    Horiba, Tatsuo
    PROCEEDINGS OF THE IEEE, 2014, 102 (06) : 939 - 950
  • [4] Online Parameter Identification for Lithium-ion Cell in Battery Management System
    Wang, Tiansi
    Pei, Lei
    Lu, Rengui
    Zhu, Chunbo
    Wu, Guoliang
    2014 IEEE VEHICLE POWER AND PROPULSION CONFERENCE (VPPC), 2014,
  • [5] Computational Modelling of Thermal Runaway Propagation in Lithium-Ion Battery Systems
    Citarella, Martina
    Suzzi, Daniele
    Brunnsteiner, Bernhard
    Schiffbaenker, Paul
    Maier, Gernot
    Schneider, Juergen
    2019 IEEE TRANSPORTATION ELECTRIFICATION CONFERENCE (ITEC-INDIA), 2019,
  • [6] Performance of Inconsistency in Lithium-ion Battery Packs for Battery Energy Storage Systems
    Chen, Man
    Zhang, Baihua
    Li, Yongqi
    Qi, Guoguang
    Yang, Daiming
    Liu, Jianzheng
    2014 IEEE PES ASIA-PACIFIC POWER AND ENERGY ENGINEERING CONFERENCE (IEEE PES APPEEC), 2014,
  • [7] Study on Battery Management System and Lithium-ion Battery
    Li Siguang
    Zhang Chengning
    2009 INTERNATIONAL CONFERENCE ON COMPUTER AND AUTOMATION ENGINEERING, PROCEEDINGS, 2009, : 218 - 222
  • [8] Lifetime Management Method of Lithium-ion battery for Energy Storage System
    Won, Il-Kuen
    Kim, Do-Yun
    Hwang, Jun-Ha
    Lee, Jung-Hyo
    Won, Chung-Yuen
    2015 18TH INTERNATIONAL CONFERENCE ON ELECTRICAL MACHINES AND SYSTEMS (ICEMS), 2015, : 1375 - 1380
  • [9] Lithium-ion battery-supercapacitor energy management for DC microgrids
    Chen, Haomeng
    INTERNATIONAL JOURNAL OF LOW-CARBON TECHNOLOGIES, 2022, 17 : 1452 - 1458
  • [10] Lifetime Management Method of Lithium-ion battery for Energy Storage System
    Won, Il-Kuen
    Choo, Kyoung-Min
    Lee, Soon-Ryung
    Lee, Jung-Hyo
    Won, Chung-Yuen
    JOURNAL OF ELECTRICAL ENGINEERING & TECHNOLOGY, 2018, 13 (03) : 1173 - 1184