首页> 外文会议>International Conference on Modeling, Simulation and Applied Optimization >An active battery cell balancing topology without using external energy storage elements
【24h】

An active battery cell balancing topology without using external energy storage elements

机译:主动电池平衡结构,无需使用外部储能元件

获取原文

摘要

Cell balancing circuits are important to extent life-cycle of batteries and to extract maximum power from the batteries. A lot of power electronics topology has been tried for cell balancing in the battery packages. Active cell balancing topologies transfer energy from the cells showing higher performance to the cells showing lower performance to balance voltages across the cells of the battery using energy storage elements like combination of inductor-capacitor or transformer-capacitor or switched capacitor or switched inductor. In this study an active balancing topology without using any energy storage element is proposed. The idea is similar to the switched capacitor topology in which a capacitor or capacitor banks is switched across the cells of battery to balance the voltages. Since a basic battery cell model includes capacitance because of capacitive effect of the cell, this capacitive effect can be utilized in cell balancing. Hence the equalizer capacitors in switched capacitor topology can be eliminated and the cells of battery can be switched with each other. This allows faster energy transfer and hence results in quick equalization. The proposed topology removes the need of extra energy storage elements like capacitors which frequently fails in power electronic circuits, reduces the losses inserted by extra energy storage elements and cost and volume of the circuits and simplifies control algorithm. The proposed balancing circuit can be implemented according to the application requirement. The proposed topology is simulated in MATLAB/Simulink environment and showed better results in terms of balancing speed in comparison to switched capacitor topologies.
机译:电池平衡电路对于延长电池的使用寿命并从电池中获取最大功率非常重要。为了电池组中的电池单元平衡,已经尝试了许多电力电子拓扑。有源电池平衡拓扑使用能量存储元件(例如电感器-电容器或变压器-电容器或开关电容器或开关电感器的组合)将能量从显示较高性能的电池单元转移到显示较低性能的电池单元,以平衡电池两端的电压。在这项研究中,提出了一种不使用任何储能元件的主动平衡拓扑。这个想法类似于开关电容器拓扑结构,在该拓扑结构中,一个电容器或多个电容器组在整个电池单元之间切换以平衡电压。由于基本的电池单元模型由于单元的电容效应而包括电容,因此该电容效应可用于单元平衡。因此,可以消除开关电容器拓扑中的均衡电容器,并且电池单元可以彼此切换。这允许更快的能量传递,并因此导致快速均衡。提出的拓扑结构消除了对诸如电容器的额外储能元件的需求,电容器在电力电子电路中经常发生故障,减少了由额外的储能元件插入的损耗以及电路的成本和体积,并简化了控制算法。所提出的平衡电路可以根据应用需求来实现。所提出的拓扑在MATLAB / Simulink环境中进行了仿真,与开关电容器拓扑相比,在平衡速度方面显示出更好的结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号