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Modeling of second-life batteries for use in a CERTS microgrid

机译:用于CERTS微电网的二次电池建模

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A second-life battery is an electric vehicle battery pack that has reached an end-of-life condition for its vehicular use, yet retains enough performance to be re-purposed for another application. One promising application of a second-life battery is stationary energy storage within a CERTS microgrid. This paper investigates the modeling of multiple paralleled traction battery packs within a CERTS microgrid, examining the impacts of elevated internal pack impedance on microgrid system operation. Impedance spectroscopy and hybrid-pulse power characterization are used to model vehicular Li-ion cells under a range of conditions that include second-life aging. The ac bus dynamics of the microgrid model are validated experimentally. Second-life battery models are incorporated into two CERTS microgrid architectures and system-level effects of changing the battery impedance are explored. Simulation results indicate that the modeled EV second-life batteries deliver promising performance characteristics in both CERTS microgrid architectures that were investigated.
机译:二次充电电池是一种电动汽车电池组,已达到其车辆使用的报废条件,但仍保留了足够的性能以重新用于其他应用。第二寿命电池的一个有希望的应用是CERTS微电网中的固定式能量存储。本文研究了CERTS微电网中多个并联牵引电池组的建模,研究了内部电池组阻抗升高对微电网系统运行的影响。阻抗谱和混合脉冲功率表征用于在包括第二寿命老化的一系列条件下对车辆锂离子电池进行建模。微电网模型的交流母线动力学经过实验验证。第二寿命电池模型被合并到两个CERTS微电网架构中,并探讨了改变电池阻抗的系统级影响。仿真结果表明,建模的EV第二寿命电池在两种已研究的CERTS微电网架构中均提供了可观的性能特征。

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