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Regular Paper | Open Access

Regenerative Braking Control of Multi-step Series Hybrid Energy Storage System with Energy Constraint for Practical Operation

Jian WangChaofeng Pan( )Liao ChenHaobin Jiang
School of Automotive and Traffic Engineering, Jiangsu University, Zhenjiang 212013, China
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Abstract

Regenerative braking plays an important role in improving the driving range of electric vehicles. To achieve accurate and efficient braking deceleration control, this research focuses on the energy recovery process with ultracapacitors (UCs). According to statistical analysis results of characteristics for typical operation, a multi-step series hybrid energy storage system(M-SHESS) is constructed to realize energy recovery with grading in the braking process. To explore accurate measurement of braking deceleration without the vehicle speed sensor in the braking force control, the relationship between energy recovered by UC modules and the braking deceleration during the braking energy recovery is analyzed, and a deceleration control method with energy constraint for braking force is proposed. Results show M-SHESS can be applicable for energy recovery processes on different operations, and can effectively improve the efficiency of energy recovery. Moreover, the deceleration control method based on energy constraint can meet the vehicle braking requirement. Research for M-SHESS provides new ideas and approaches for the development of electric vehicles and fuel cell vehicles.

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CSEE Journal of Power and Energy Systems
Pages 1041-1051

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Cite this article:
Wang J, Pan C, Chen L, et al. Regenerative Braking Control of Multi-step Series Hybrid Energy Storage System with Energy Constraint for Practical Operation. CSEE Journal of Power and Energy Systems, 2026, 12(2): 1041-1051. https://doi.org/10.17775/CSEEJPES.2022.02120

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Received: 09 April 2022
Revised: 21 June 2022
Accepted: 18 July 2022
Published: 20 July 2022
© 2022 CSEE.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).