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Efficiency Optimized Power-Sharing Algorithm for Modular Battery Energy Storage Systems

delete2023-11-01
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OA
AI
B
Bortecene Yildirim *
M
Mohammed A. Elgendy
A
Andrew Smith
V
Volker Pickert
DOI:10.1109/TIE.2022.3229311delete
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摘要

摘要

En 中文
Modular battery energy storage systems (MBESSs) enable the use of lower-rated voltage converters and battery modules, and simpler battery management systems. They also improve the system's reliability and allow flexible power sharing among different modules. This article proposes a power-sharing algorithm that maximizes the energy conversion efficiency of this battery energy storage system, considering state of charge (SoC) balancing and battery lifespan. Real-time optimum power sharing is undertaken based on a simple lookup table, whose data were generated via offline genetic algorithm optimization considering the converter's efficiency map. To demonstrate the effectiveness of the proposed algorithm, a six-module prototype system was constructed, each comprising a half-bridge converter and a 10 Ah, 12.8 V, LiFePo4 battery. System testing occurred at different battery power levels in both charging and discharging modes, using the proposed efficiency-optimized power-sharing and the conventional SoC-based power-sharing methods. The results obtained show that the proposed power-sharing control significantly improves the light load efficiency compared to the conventional and equal power-sharing methods. At high loads, the proposed method gives a higher efficiency than the SoCbased method and an equivalent efficiency to the equal power-sharing method.
Keyword:
Batteries
Voltage
Optimization
Switches
Voltage control
Energy exchange
Battery management systems
Battery management systems (BMS)
efficiency improvement
modular battery energy storage system

期刊

IEEE Transactions on Industrial Electronics 封面图
IEEE Transactions on Industrial Electronics
IF:
7.2
论文数:
1.8W
被引数:
9.8W

机构

N
newcastle university - uk
学者数:
2.9W
论文数: 2.6W
被引数: 39
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