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A Crossed Pack-to-Cell Equalizer Based on Quasi-Resonant LC Converter with Adaptive Fuzzy Logic Equalization Control for Series-connected Lithium-Ion Battery Strings

机译:基于准谐振LC变换器的交叉单元均衡器,具有自适应模糊逻辑均衡控制的串联锂离子电池串

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摘要

The equalization speed, efficiency, and control are the key issues of battery equalization. This paper proposes a crossed pack-to-cell equalizer based on quasi-resonant LC converter (QRLCC). The battery string is divided into M modules, and each module consists of N series-connected cells. The energy can be transferred directly from a battery module to the lowest voltage cell (LVC) in the next adjacent module, which results in an enhancement of equalization efficiency and current. The QRLCC is employed to gain zero-current switching (ZCS), leading to a reduction of power losses and electromagnetic interference (EMI). Furthermore, an adaptive fuzzy logic control (AFLC) algorithm is employed to online regulate the equalization period according to the voltage difference between cells and the cell voltage, not only greatly abbreviating the balancing time but also effectively preventing over-equalization. A prototype with eight lithiumion battery cells is implemented. Experimental results show the proposed scheme exhibits outstanding balancing performance, and the equalization efficiency is higher than 98%. The proposed AFLC algorithm abridges the total equalization time about 47%, and reduces the switching cycle about 62% compared with the traditional fuzzy logic control (FLC) algorithm.
机译:均衡速度,效率和控制是电池均衡的关键问题。本文提出了一种基于准谐振LC转换器(QRLCC)的交叉单元间均衡器。电池组分为M个模块,每个模块由N个串联的电池组成。能量可以直接从电池模块传递到下一个相邻模块中的最低电压电池(LVC),从而提高均衡效率和电流。 QRLCC用于获得零电流开关(ZCS),从而减少了功率损耗和电磁干扰(EMI)。此外,采用自适应模糊逻辑控制(AFLC)算法根据电芯之间的电压差和电芯电压在线调节均衡周期,不仅大大缩短了平衡时间,而且有效地防止了过度均衡。实现了具有八个锂离子电池单元的原型。实验结果表明,该方案具有良好的均衡性能,均衡效率高于98%。与传统的模糊逻辑控制(FLC)算法相比,提出的AFLC算法将总均衡时间缩短了约47%,并将切换周期减少了约62%。

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