Two-stage energy storage equalization system for lithium-ion battery pack

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Abstract

How to raise the efficiency of energy storage and maximize storage capacity is a core problem in current energy storage management. For that, two-stage energy storage equalization system which contains two-stage equalization topology and control strategy based on a symmetric multi-winding transformer and DC-DC (direct current-direct current) converter is proposed with bidirectional active equalization theory, in order to realize the objectives of consistent lithium-ion battery packs voltages and cells voltages inside packs by using a method of the Range. Modeling analysis demonstrates that the voltage dispersion of lithium-ion battery packs and cells inside packs can be kept within 2 percent during charging and discharging. Equalization time was 0.5 ms, which shortened equalization time of 33.3 percent compared with DC-DC converter. Therefore, the proposed two-stage lithium-ion battery equalization system can achieve maximum storage capacity between lithium-ion battery packs and cells inside packs, meanwhile efficiency of energy storage is significantly improved.

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APA

Chen, W., Yang, Z. X., Dong, G. Q., Li, Y. B., & He, Q. Y. (2017). Two-stage energy storage equalization system for lithium-ion battery pack. In IOP Conference Series: Earth and Environmental Science (Vol. 93). Institute of Physics Publishing. https://doi.org/10.1088/1755-1315/93/1/012046

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