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Impact of charge redistribution on delivered energy of supercapacitors with constant power loads

机译:电荷重新分配对恒定功率负载下超级电容器的输送能量的影响

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This paper experimentally investigates the impact of charge redistribution on the amount of energy delivered by supercapacitors connected to constant power loads. A set of eight constant power discharge experiments is designed and performed for four supercapacitor samples. It is revealed that the delivered energy increases when the discharge power decreases and therefore Peukert's law applies, which can be explained using an RC ladder circuit model characterizing the porous electrode structure of supercapacitors. This paper also demonstrates the feasibility of predicting the supercapacitor discharge time during a constant power discharge process using Peukert's law. Two fitting functions are adopted to determine the Peukert constant. Results show that the prediction error can be significantly reduced if Peukert's law is utilized, or equivalently, the charge redistribution characteristic is taken into account.
机译:本文通过实验研究了电荷重新分布对连接到恒定功率负载的超级电容器所输送的能量的影响。针对四个超级电容器样本设计并执行了一组八个恒定功率放电实验。结果表明,当放电功率降低时,输送的能量增加,因此应用了Peukert定律,这可以用表征超级电容器多孔电极结构的RC梯形电路模型来解释。本文还演示了使用Peukert定律预测恒功率放电过程中超级电容器放电时间的可行性。采用两个拟合函数来确定Peukert常数。结果表明,如果利用Peukert定律或等效地考虑电荷重新分布特性,则可以大大降低预测误差。

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