高压冲击后锂离子电池特性分析研究

Takeshi Ishiguro, Yoji Fujita, H. Urushibata, A. Kono, M. Koyama, R. Hanaoka
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引用次数: 1

摘要

最近,锂离子电池(LiB)开始被引入电动汽车和电力平衡。在功率均衡中,可以想象LiB连接到电网。因此,必须考虑将感应雷击等高压脉冲应用于锂离子电池的可能性,但在学术上却鲜有研究。因此,本研究将高频高压脉冲应用于锂离子电池,并研究其影响。首先,考虑到传输线的电感和地电容,通过减小电极面积制成高阻抗LiB。其次,利用脉冲噪声模拟器,将脉冲宽度为0.4 μs、电压为1 kV的电压脉冲施加到所制备的高阻抗LiB上10次。预计高压脉冲会使锂离子电池的容量下降,但实际情况几乎没有变化。另一方面,在应用高压脉冲实验后对锂离子电池进行交流阻抗分析时,发现高频侧电弧变小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analytical Study on Characteristics of Lithium-ion Battery after Applying High Voltage Impulse
Recently, Lithium-ion Batteries (LiB) have begun to be introduced for electric vehicles and power leveling. In power leveling, it is conceivable that LiB is connected to the grid. Therefore, the possibility that a high voltage pulse such as induced lightning will be applied to LiB must be considered, but it has hardly studied academically. Thus, in this study, high-frequency high-voltage pulse was applied to LiB and its effects were investigated. First, considering the inductance and ground capacitance of the transmission line, high impedance LiB was made by reducing the electrode area. Second, using an impulse noise simulator, voltage pulses with a pulse width of 0.4 [μs] and a voltage of 1 [kV] were applied ten times to the prepared high impedance LiB. It was expected that the capacity of LiB would decrease due to high voltage pulse, however it hardly changed. On the other hand, in the AC impedance analysis of the LiB after applying the high voltage pulse experiment, it was found that the arc of the high frequency side became smaller.
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