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A simplified equivalent circuit model for simulation of Pb-acid batteries at load for energy storage application

机译:用于能量存储应用中的铅酸蓄电池仿真的简化等效电路模型

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摘要

Three main types of battery chemistries in consideration for vehicle applications are Pb-acid, nickel-metal hydride, and lithium-ion batteries. Lead-acid batteries are widely used in traditional automotive applications for many years. Higher voltage, high-rate discharge capability, good specific energy, lower temperature performance, lower thermal management requirement, and low-cost in both manufacturing and recycling are the advantages of the rechargeable battery. Disadvantages of the lead-acid battery are: weight concerns of lead metal (lower energy density and lower power density) and limited cycle-life (especially in deep-cycle duties). If two major disadvantages have been significantly changed to a proper state to compete with other battery chemistries, the Pb-acid battery is still a good candidate in considering of cost/performance ratio. The lead-acid battery is always a good power source for fast starting of cold vehicles, for recharging from either a stop-start braking system, or for a charge from the engine itself, which consumes battery energy or stores electricity back into chemical energy. The main reasons for reexamining this battery chemistry are cost-savings and life-cycling considerations upon advances in electrode structure design and enhancement of capacitance behavior inside the battery pack. Several Pb-acid batteries were evaluated and tested through a unique method, i.e., the electrochemical impedance method at different loads, in order to characterize and further understand the improved electrode processes and mechanisms in performance enhancement. The impedance data at loads were collected from these lead-acid batteries at load for further analysis. Battery electrode behaviors are evaluated through impedance data simulation using a proper equivalent circuit model. A defective battery and a failed Pb-acid battery were used in non-destructive analysis. The recent Pb-acid battery advancement in structures and designs and its potential application are also discussed for power reserve in energy-efficient vehicles and sustainable electricity storage.
机译:在汽车应用中考虑的三种主要电池化学类型是铅酸电池,镍氢电池和锂离子电池。铅酸电池已在传统的汽车应用中广泛使用了很多年。可再充电电池的优点是较高的电压,高倍率的放电能力,良好的比能量,较低的温度性能,较低的热管理要求以及制造和回收成本低廉。铅酸电池的缺点是:铅金属的重量问题(较低的能量密度和较低的功率密度)和有限的循环寿命(尤其是在深循环工作中)。如果已经将两个主要缺点显着改变为与其他电池化学产品竞争的适当状态,则考虑到成本/性能比,铅酸电池仍然是不错的选择。铅酸电池始终是良好的动力来源,可用于冷车的快速启动,从停车启动制动系统充电或从发动机本身充电,从而消耗电池能量或将电重新存储为化学能。重新检查这种电池化学成分的主要原因是,随着电极结构设计的进步以及电池组内部电容性能的增强,节约了成本并考虑了生命周期。通过一种独特的方法,即在不同负载下的电化学阻抗方法,对几种铅酸电池进行了评估和测试,以表征和进一步理解改进的电极工艺和增强性能的机理。从这些铅酸蓄电池在负载下收集了负载下的阻抗数据,以进行进一步分析。使用适当的等效电路模型通过阻抗数据仿真可以评估电池电极的行为。在无损分析中使用了有缺陷的电池和有故障的铅酸电池。还讨论了铅酸蓄电池在结构和设计方面的最新进展及其在节能汽车中的动力储备和可持续电力存储的潜在应用。

著录项

  • 来源
    《Energy Conversion & Management》 |2011年第9期|p.2794-2799|共6页
  • 作者单位

    Center for Microfibrous Materials, Department of Chemical Engineering, 212 Ross Hall, Auburn University, AL 36849-5127, USA;

    Center for Microfibrous Materials, Department of Chemical Engineering, 212 Ross Hall, Auburn University, AL 36849-5127, USA;

    Center for Microfibrous Materials, Department of Chemical Engineering, 212 Ross Hall, Auburn University, AL 36849-5127, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    lead-acid battery battery chemistry power reserve battery energy storage;

    机译:铅酸电池电池化学动力备用电池储能;

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