首页> 外文会议>IEEE Southern Power Electronics Conference >An Improved Active Li-ion Battery Equalization Scheme for Enhancing the Performance of a nearly Zero Energy Building and Electric Vehicle Microgrid
【24h】

An Improved Active Li-ion Battery Equalization Scheme for Enhancing the Performance of a nearly Zero Energy Building and Electric Vehicle Microgrid

机译:一种改进的有源锂离子电池均衡方案,可提高接近零能耗的建筑和电动汽车微电网的性能

获取原文

摘要

This paper proposes an improved Battery Management System (BMS) that provides active equalization in the battery cells to reduce the total charging time and enhance the system performance. The suggested control scheme can be applied to energy storage systems with Li-ion batteries that are utilized in nearly zero energy building (nZEB) and electric vehicle (EV) microgrids. The proposed BMS is more suitable for the above applications, since repeatable and high dynamic performance from the battery system are required. The improvement in the battery operation and therefore, the enhancement of the whole microgrid performance can be accomplished by properly regulating the charging current of each battery cell through the gate voltage of a parallel connected MOSFET. An Aging Estimator Fuzzy Logic Controller (AEFLC) is also proposed that can online estimates the healthier cell of each battery stack by properly evaluating the internal resistance growth and the capacity fade factor of each cell. Thus, based on the healthier cell, the proposed algorithm controls the MOSFET current in order to achieve the cell equalization. Specifically, an Equalizer Fuzzy Logic Controller (EFLC) evaluates the cells' voltages and applies the appropriate gate-source voltage (VGS) at each MOSFET. The functionality and the effectiveness of the proposed BMS are verified both for nZEB and EV microgrids via simulation models using the MATLAB/Simulink program. Selective simulation results are presented to validate the operating improvements that the new BMS technique can provide.
机译:本文提出了一种改进的电池管理系统(BMS),该系统可在电池单元中提供主动均衡功能,以减少总充电时间并增强系统性能。所建议的控制方案可以应用于带有锂离子电池的储能系统,该系统用于几乎零能耗的建筑(nZEB)和电动汽车(EV)的微电网中。所提出的BMS更适用于上述应用,因为需要电池系统具有可重复性和高动态性能。电池操作的改善,以及整个微电网性能的提高,可以通过并联的MOSFET的栅极电压适当调节每个电池单元的充电电流来实现。还提出了一种老化估计器模糊逻辑控制器(AEFLC),该控制器可以通过适当评估每个电池的内部电阻增长和容量衰减因子来在线估计每个电池组的健康电池。因此,基于更健康的电池,所提出的算法控制MOSFET电流以实现电池均衡。具体来说,均衡器模糊逻辑控制器(EFLC)评估单元的电压并施加适当的栅极-源极电压(V GS )在每个MOSFET上。通过使用MATLAB / Simulink程序的仿真模型,针对nZEB和EV微电网对所提出的BMS的功能和有效性进行了验证。提出了选择性仿真结果,以验证新BMS技术可以提供的运行改进。

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