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A novel equivalent modeling method combined with the splice-electrochemical polarization model and prior generalized inverse least-square parameter identification for UAV lithium-ion batteries.

Peng, Jiawei; Shi, Haotian; Wang, Shunli; Wang, Liping; Fernandez, Carlos; Xiong, Xin; Dablu, Bobobee Etse

Authors

Jiawei Peng

Haotian Shi

Shunli Wang

Liping Wang

Xin Xiong

Bobobee Etse Dablu



Abstract

The accuracy of lithium-ion battery state estimation is critical to the safety of unmanned aerial vehicles (UAVs). In this paper, aiming at the high-fidelity modeling of the UAV lithium-ion battery, a splice-electrochemical polarization model (S-EPM) for UAV lithium-ion battery is constructed by combining the traditional electrochemical model with the equivalent circuit model, which greatly improved the accuracy of the battery modeling. In addition, a novel prior generalized inverse least-squares algorithm is proposed. Also, based on this algorithm, the full-parameter identification and multicondition error analysis of the S-EPM are realized based on this algorithm. Finally, a targeted complex discharge rate test and a full-function charge–discharge test were designed to further verify the applicability of the S-EPM to complex conditions. The experimental results show that the voltage error of the model under each working condition is 5.50 and 3.0 mV, and the maximum percentage error ratio is 0.20% and 0.07%. This experiment can provide a theoretical basis for the combination of the electrochemical model and equivalent circuit model and the accurate estimation of internal state variables of lithium-ion batteries.

Citation

PENG, J., SHI, H., WANG, S., WANG, L., FERNANDEZ, C., XIONG, X. and DABLU, B.E. 2022. A novel equivalent modeling method combined with the splice-electrochemical polarization model and prior generalized inverse least-square parameter identification for UAV lithium-ion batteries. Energy science and engineering [online], 10(10), pages 3727-3740. Available from: https://doi.org/10.1002/ese3.1268

Journal Article Type Article
Acceptance Date Mar 10, 2022
Online Publication Date Aug 9, 2022
Publication Date Oct 31, 2022
Deposit Date Aug 18, 2022
Publicly Available Date Aug 18, 2022
Journal Energy science and engineering
Electronic ISSN 2050-0505
Publisher Wiley
Peer Reviewed Peer Reviewed
Volume 10
Issue 10
Pages 3727-3740
DOI https://doi.org/10.1002/ese3.1268
Keywords Improve the Nernst model; Lithium-ion batteries; Parameter identification; Prior generalized inverse least square; Splice-electrochemical polarization model
Public URL https://rgu-repository.worktribe.com/output/1739717

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