A REVIEW OF COMMUNICATION AND ENERGY BALANCING SCHEMES IN LI-ION BATTERY MANAGEMENT SYSTEMS

Y. Zhang, Y. Hu
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Abstract

Battery management systems (BMS) play a significant role in electric vehicles. An efficient BMS can not only extend the battery life but also provide timely feedback of battery status information to a remote server. Since communication and energy balancing are crucial functions in BMS, it is of great significance to summarize the previous research in these fields for the improvement of BMS system structure optimisation and equalization circuits. The controller area network bus-based, wireless-based, and power line-based signal transmission schemes in BMS are reviewed in this paper. The advantages and limitations of these communication methods are summarised. Furthermore, various Li-ion battery-balancing topologies for energy storage systems are demonstrated in this article. Either employing resistors, capacitors, DC/DC converters for current shunting or using transformers for energy conversion among different cells, can achieve battery charge equalization. Moreover, the operating principles and charge balancing capability of these topologies are discussed.
锂离子电池管理系统中的通信和能量平衡方案综述
电池管理系统(BMS)在电动汽车中发挥着重要作用。高效的BMS不仅可以延长电池寿命,还可以向远程服务器及时反馈电池状态信息。由于通信和能量平衡是BMS中的关键功能,因此总结这些领域的研究成果对于BMS系统结构优化和均衡电路的改进具有重要意义。本文综述了基于控制器局域网总线、基于无线和基于电力线的BMS信号传输方案。总结了这些通信方法的优点和局限性。此外,本文还展示了用于储能系统的各种锂离子电池平衡拓扑结构。采用电阻、电容、DC/DC变换器进行电流分流,或采用变压器进行不同电池间的能量转换,均可实现电池充电均衡。此外,还讨论了这些拓扑的工作原理和电荷平衡能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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