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Special Issue Paper

Zeta-SEPIC Converter-based Integrated Battery Equalization Method for Lithium-ion Battery Strings

Xianbin Qi1Penglei Liu1Peng Qin1( )Mingzhu Fang2Helong Li1Lijian Ding1
School of Electrical Engineering and Automation, Hefei University of Technology, Hefei 230009, China
National Key Laboratory of Deep Space Exploration, Deep Space Exploration Laboratory, Hefei 230009, China
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Abstract

Battery equalization management is a key technology for ensuring the safe and efficient operation of equipment containing battery energy storage systems, such as electric vehicles, drones, and renewable energy generation. In this paper, an integrated equalizer for lithium-ion battery strings is proposed. This equalizer enables the multiplexing of switches in a traditional centralized equalization system and integrates the bidirectional switch used for battery selection in the switch array and power switch used for energy conversion in the bidirectional Zeta-SEPIC converter, thereby obtaining high-power-density characteristics. This equalizer has a buffer-based structure that guarantees efficiency and expandability when equalizing series-connected battery strings. Compared with conventional methods, the proposed scheme exhibits a controllable equalization current, small number of components, low cost, and high efficiency, and has broad application prospects and practical value. The operating principles, theoretical derivations, and design considerations are thoroughly analyzed. An experimental test platform is built, and experiments are conducted using a four-cell lithium-ion battery string. The experimental and comparison results verified the superiority and feasibility of the Zeta-SEPIC converter-based battery equalizer.

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Chinese Journal of Electrical Engineering
Pages 107-119

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Cite this article:
Qi X, Liu P, Qin P, et al. Zeta-SEPIC Converter-based Integrated Battery Equalization Method for Lithium-ion Battery Strings. Chinese Journal of Electrical Engineering, 2026, 12(1): 107-119. https://doi.org/10.23919/CJEE.2026.000007

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Received: 16 December 2025
Revised: 12 January 2026
Accepted: 22 January 2026
Published: 31 March 2026
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