首页> 外文期刊>Journal of Energy Storage >Challenges in modeling high power lithium titanate oxide cells in battery management systems
【24h】

Challenges in modeling high power lithium titanate oxide cells in battery management systems

机译:在电池管理系统中对高功率钛酸锂氧化物电池建模的挑战

获取原文
获取原文并翻译 | 示例
           

摘要

Two of the key requirements in micro-hybrid vehicles are the reduction of CO2 emissions alongside extended fuel savings. These goals are being accomplished by the usage of start-stop-systems, electric boosting while accelerating and recuperation of kinetic energy during braking phases. The latter one is predominantly limited by the charge acceptance of conventional lead-acid starter batteries. Thus, sophisticated power nets are being developed and a new 48 V voltage level has been established in the last years. In comparison to the standard 12 V grid, this new level is characterized by high power capability in order to accept high charging currents during recuperative braking and also provides high discharge currents for boosting.This paper characterizes lithium titanate oxide cells suited for high power applications, such as in automotive 48 V systems, and emphasizes restrictions using state-of-the-art modeling approaches in terms of state of available power and state of charge. Therefore, open circuit behavior is analyzed in dependency on temperature, hysteresis and relaxation. Furthermore, different equivalent circuit models are evaluated regarding their accuracy for different states of charge, temperatures and current rates. It has been found that the HPPC testing procedure is limited in characterizing high current behavior. Furthermore, it is shown that the previous long-term history has a significant impact on voltage responses at certain states of charge and current rates, which originates from an inhomogeneous distribution of charge carriers on the electrode surface.
机译:微型混合动力汽车的两个关键要求是减少二氧化碳排放量以及节省更多的燃料。通过使用起停系统,在加速过程中加速和恢复动能的电动助力系统,可以实现这些目标。后者主要受到常规铅酸起动器电池的充电接受的限制。因此,在过去几年中,正在开发复杂的电网,并建立了新的48 V电压电平。与标准的12 V电网相比,此新级别的特点是具有高功率能力,以便在回热制动过程中接受高充电电流,并提供高放电电流以进行升压。本文介绍了适用于高功率应用的钛酸锂电池的特性,例如在汽车48 V系统中,并且强调了使用最新建模方法在可用功率状态和充电状态方面的限制。因此,根据温度,磁滞和松弛来分析开路行为。此外,针对不同的充电状态,温度和电流速率评估了不同的等效电路模型的准确性。已经发现,HPPC测试程序在表征高电流行为方面受到限制。此外,已经表明,先前的长期历史对某些电荷状态和电流速率下的电压响应具有重大影响,这是由于电极表面上载流子的分布不均匀所致。

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