首页> 外文OA文献 >State-of-charge determination from emf voltage estimation : using impedance, terminal voltage, and current for lead-acid and lithium-ion batteries
【2h】

State-of-charge determination from emf voltage estimation : using impedance, terminal voltage, and current for lead-acid and lithium-ion batteries

机译:通过电动势电压估算确定充电状态:使用阻抗,端电压和铅酸和锂离子电池电流

摘要

State-of-charge (SOC) determination is an increasingly important issue in battery technology. In addition to the immediate display of the remaining battery capacity to the user, precise knowledge of SOC exerts additional control over the charging/discharging process, which can be employed to increase battery life. This reduces the risk of overvoltage and gassing, which degrade the chemical composition of the electrolyte and plates. The proposed model in this paper determines the SOC by incorporating the changes occurring due to terminal voltage, current load, and internal resistance, which mitigate the disadvantages of using impedance only. Electromotive force (EMF) voltage is predicted while the battery is under load conditions; from the estimated EMF voltage, the SOC is then determined. The method divides the battery voltage curve into two regions: 1) the linear region for full to partial SOC and 2) the hyperbolic region from partial to low SOC. Algorithms are developed to correspond to the different characteristic changes occurring within each region. In the hyperbolic region, the rate of change in impedance and terminal voltage is greater than that in the linear region. The magnitude of current discharge causes varying rates of change to the terminal voltage and impedance. Experimental tests and results are presented to validate the new models.
机译:充电状态(SOC)的确定是电池技术中越来越重要的问题。除了可以向用户立即显示剩余电池电量外,SOC的精确知识还可以对充电/放电过程进行额外控制,从而可以延长电池寿命。这降低了过电压和放气的风险,过压和放气会降低电解质和极板的化学成分。本文提出的模型通过合并由于端子电压,电流负载和内部电阻引起的变化来确定SOC,从而减轻了仅使用阻抗的缺点。当电池处于负载条件下时,会预测电动势(EMF)电压;然后从估算的EMF电压确定SOC。该方法将电池电压曲线分为两个区域:1)完全SOC到部分SOC的线性区域,以及2)从SOC到低SOC的双曲线区域。开发算法以对应于每个区域内发生的不同特征变化。在双曲线区域中,阻抗和端电压的变化率大于线性区域中的变化率。电流放电的大小会导致端子电压和阻抗的变化率变化。提出了实验测试和结果以验证新模型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

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