• CN:11-2187/TH
  • ISSN:0577-6686

›› 2010, Vol. 46 ›› Issue (10): 121-125.

• 论文 • 上一篇    下一篇

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Peukert方程的适用性分析及基于二阶段放电法的Peukert模型修正

仝猛;卢兰光;欧阳明高;邵静玥;李哲;王瑛;王斌;林庆峰;赵伟   

  1. 长安大学工程机械学院;清华大学汽车工程系;北京航空航天大学交通科学与工程学院
  • 发布日期:2010-05-20

Analysis of Rationality of Peukert Equation and Amendment Based on Two Stage Discharge Method in Capacity Estimation

TONG Meng;LU Languang;OUYANG Minggao;SHAO Jingyue;LI Zhe2;WANG Ying;WANG Bin;LIN Qingfeng;ZHAO Wei   

  1. Construction Machinery School, Chang’an University Department of Automotive Engineering, Tsinghua University School of Transportation Science & Engineering, Beihang University
  • Published:2010-05-20

摘要: 基于铅酸电池试验的Peukert方程(Peukert equation, PE)提供一个修正电流倍率影响的经验模型。但该模型的试验及应用中,存在混淆电荷损失及剩余电荷量的问题。采用二阶段放电试验方法来建立修正的Peukert模型,即对于每种倍率分别进行两个阶段的恒流放电:特定倍率放电到截至电压—静置—标准倍率放电到截至电压(CC-OC-CC)。依据两个阶段放电的总电荷量(最大可用电荷量)而非第一阶段的电荷量(可用电荷量)去建立修正的Peukert方程(PE3)。该方程(PE3)反映了倍率与电荷损耗(库仑效率)之间的关系,排除了剩余电荷量的影响,更适合于动态工况下的荷电状态(State of charge,SOC)估计。另外磷酸铁锂电池试验表明剩余电荷量与电流倍率的关系规律性更强,更符合Peukert形式的方程(PE2),与铅酸电池Peukert模型的扩散机理一致,故剩余电荷量也可据此估计。

关键词: Peukert方程, 安时积分法, 二阶段放电, 荷电荷状态, 剩余电荷量

Abstract: Peukert equation (PE) is used to compensate c-rates effect in state of charge (SOC) estimation. But the PE is inaccurate or inapplicable in many cases, such as batteries working under dynamic load. PE and its application are reviewed, its foundamental issues are discussed. In the PE, effect of remaining capacity and effect of coulombic loss are found to be confused, if PE is deduced from single stage constant discharge test. To avoid such confusion, a two stage discharge regime (Constant discharge-rest-constant discharge) is adopted, and then a new equation of C-rate versus the total discharged capacity of the two stages is deduced. The new equation (PE3) is also formally similar to original PE, except for a different Peukert coefficient. PE3 reveals the effect of C-rate on coulombic efficiency solely, so it is more applicable to SoC estimation in dynamic load circumstances. PE, PE3 are experimentally modeled and verified on lithium iron phosphate (LFP) battery.

Key words: Coulombic counting, Peukert equation, Remaining capacity, State of charge, Two stage discharge

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