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Novel voltage equalisation circuit of the lithium battery pack based on bidirectional flyback converter

机译:基于双向反激式转换器的锂电池组新电压均衡电路

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摘要

Lithium batteries have become the main power source for new energy vehicles due to their high energy density and low self-discharge rate. In actual use of series battery packs, due to battery internal resistance, self-discharge rate and other factors, inconsistencies between the individual cells inevitably exist. Such inconsistencies will reduce the energy utilisation rate and service life of the battery pack, and even endanger its battery system safety. To improve the inconsistency of series battery packs, this study innovatively proposes an equalisation method based on a flyback converter. The residual power of a single cell is used as an index of inconsistency. A simple and reliable flyback converter is used to achieve balanced energy in the entire group, which make the energy is transferred between any batteries. Compared with the traditional equalisation topology, the equalisation topology proposed in this study reduces the number of components and reduces the volume of the equalisation system. Moreover, the primary side of the energy transfer only needs a set of control signals, which reduces the control difficulty. A series of equalisation experiments were performed using 12 series of battery cells. The results show the effectiveness of the proposed new equalisation method.
机译:由于其高能量密度和低自放电率,锂电池已成为新能源汽车的主要电源。在实际使用系列电池组上,由于电池内阻,自放电率和其他因素,各个细胞之间不可避免地存在的不一致。此类不一致性将降低电池组的能量利用率和使用寿命,甚至危及其电池系统安全。为了提高串联电池组的不一致,本研究创新了基于反激式转换器的均衡方法。单个电池的残余功率用作不一致的指标。一种简单可靠的反激式转换器用于实现整个组中的平衡能,这使得能量在任何电池之间传输。与传统的均衡拓扑相比,本研究中提出的均衡拓扑减少了组件的数量并降低了均衡系统的体积。此外,能量转移的初级侧仅需要一组控制信号,这降低了控制难度。使用12系列电池单元进行一系列均衡实验。结果表明了提出的新均衡方法的有效性。

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