Comparative Study Between Internal Ohmic Resistance and Capacity for Battery State of Health Estimation
Abstract
Keywords
Full Text:
PDFReferences
S. Cole and M. Leslie, “Long-term global warming trend sustained in 2013,� 2014. [Online]. Available: http://climate.nasa.gov/news/1029/.
A. Dinger et al., and Xavier, “Focus Batteries for Electric Cars,� 2010.
T. Sar et al., “A Hybrid Battery Model and State of Health Estimation Method for Lithium-Ion Batteries,� pp. 1349–1356, 2014. crossref
S. Li et al., “Study of Battery Modeling using Mathematical and Circuit Oriented Approaches,� pp. 1–8, 2011. crossref
H. Lin et al., “Estimation of Battery State of Health Using Probabilistic Neural Network,� vol. 9, no. 2, pp. 679–685, 2013. crossref
D. Andre et al., “Comparative study of a structured neural network and an extended Kalman filter for state of health determination of lithium-ion batteries in hybrid electric vehicles,� Eng. Appl. Artif. Intell., vol. 26, no. 3, pp. 951–961, 2013. crossref
P. Singh and D. Reisner, “Fuzzy logic-based state-of-health determination of lead acid batteries,� 24th Annu. Int. Telecommun. Energy Conf., pp. 583–590. crossref
V. Klass and M. Behm, “A support vector machine-based state-of-health estimation method for lithium-ion batteries under electric vehicle operation,� vol. 270, pp. 262–272, 2014. crossref
Z. Guo et al., “State of health estimation for lithium ion batteries based on charging curves,� J. Power Sources, vol. 249, pp. 457–462, 2014. crossref
Y. Zou et al., “Combined State of Charge and State of Health estimation over lithium-ion battery cell cycle lifespan for electric vehicles,� J. Power Sources, vol. 273, pp. 793–803, 2015. crossref
C. R. Gould et al., “New Battery Model and State-of-Health Determination Through Subspace Parameter Estimation and State-Observer Techniques,� vol. 58, no. 8, pp. 3905–3916, 2009. crossref
A. Hentunen et al., “Electrical battery model for dynamic simulations of hybrid electric vehicles,� 2011 IEEE Veh. Power Propuls. Conf., pp. 1–6, Sep. 2011. crossref
X. Li and S. Choe, “State-of-charge (SOC) estimation based on a reduced order electrochemical thermal model and extended Kalman filter,� 2013 Am. Control Conf., pp. 1100–1105, Jun. 2013. crossref
X. Hu et al., “A comparative study of equivalent circuit models for Li-ion batteries,� J. Power Sources, vol. 198, pp. 359–367, 2012. crossref
L. Lu et al., “A review on the key issues for lithium-ion battery management in electric vehicles,� J. Power Sources, vol. 226, pp. 272–288, Mar. 2013. crossref
A. Hand, “No Title.� [Online]. Available: http://www.hobbyking.com/hobbyking/store/__317__85__Batteries_Accessories-Turnigy_Lipoly.html. [Accessed: 20-Nov-2015].
A. Zenati et al., “A Methodology to Assess the State Of Health of Lithium-ion Batteries Based on the Battery ’ s Parameters and a Fuzzy Logic System,� IECON 2010, 2010. crossref
E. Davis et al., “Internal ohmic measurements and their relationship to battery capacity – epri’s ongoing technology evaluation,� pp. 1–10.
M. U. Cuma and T. Koroglu, “A comprehensive review on estimation strategies used in hybrid and battery electric vehicles,� Renew. Sustain. Energy Rev., vol. 42, pp. 517–531, 2015. crossref
J. Remmlinger et al., “On-board state-of-health monitoring of lithium-ion batteries using linear parameter-varying models q,� J. Power Sources, vol. 239, pp. 689–695, 2013. crossref
Article Metrics
Metrics powered by PLOS ALM
Refbacks
- There are currently no refbacks.
Copyright (c) 2015 Journal of Mechatronics, Electrical Power, and Vehicular Technology
This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.