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A Reconfigurable Battery Supercapacitor Hybrid Energy System with Active Balancing for Vehicle Applications

机译:一种可重构的电池超级电容器混合能量系统,具有车辆应用的主动平衡

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The concept of reconfigurable energy systems has become more and more popular in recent years for electric vehicle applications, which can largely enhance battery performance and extend battery lifetime. Active balancing is an advanced function realized by battery management systems (BMSs) to improve energy efficiencies and avoid potential over-charging risks. This paper proposed a reconfigurable hybrid energy system (HESS) that consists of one supercapacitor module, n lithium-ion modules, one DC/DC converter, and 3n switches, to enhance energy system performance with fast active balancing. The developed algorithms are to find out all possible configurations for a given lithium-ion module number and module section number, and the best configuration is selected based on the fastest balancing speed requirement. The proposed topology and algorithms are finally verified by simulations under standard vehicle driving cycles.
机译:近年来,可重新配置的能源系统的概念越来越受欢迎,电动汽车应用可能在很大程度上提高电池性能并延长电池寿命。 主动平衡是由电池管理系统(BMS)实现的先进功能,以提高能量效率并避免潜在的过度充电风险。 本文提出了一种可重构的混合能量系统(HESS),包括一个超级电容器模块,N个锂离子模块,一个DC / DC转换器和3N开关,以提高能源系统性能,快速有效平衡。 发达的算法是找出给定锂离子模块号和模块部分编号的所有可能配置,并且基于最快的平衡速度要求选择最佳配置。 在标准车辆驱动周期下,最终通过模拟验证所提出的拓扑和算法。

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