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A lithium-ion capacitor model working on a wide temperature range

机译:适用于宽温度范围的锂离子电容器模型

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Energy storage systems are spreading both in stationary and transport applications. Among innovative storage devices, lithium ion capacitors (LiCs) are very interesting. They combine the advantages of both traditional electric double layer capacitors (EDLCs) and lithium ion batteries (LiBs). The behavior of this device is much more similar to ELDCs than to batteries. For this reason, several models developed for traditional ELDCs were extended to LiCs. Anyway, at low temperatures LiCs behavior is quite different from ELDCs and it is more similar to a LiB. Consequently, EDLC models works fine at room temperature but give worse results at low temperatures. This paper proposes a new electric model that, overcoming this issue, is a valid solution in a wide temperature range. Based on only five parameters, depending on polarization voltage and temperature, the proposed model is very simple to be implemented. Its accuracy is verified through experimental tests. From the reported results, it is also shown that, at very low temperatures, the dependence of the resistance from the current has to be taken into account. (C) 2016 Elsevier B.V. All rights reserved.
机译:储能系统在固定和运输应用中都在普及。在创新的存储设备中,锂离子电容器(LiC)非常有趣。它们结合了传统双电层电容器(EDLC)和锂离子电池(LiB)的优点。与电池相比,此设备的行为与ELDC更相似。因此,为传统ELDC开发的几种模型已扩展到LiC。无论如何,在低温下,LiC的行为与ELDC完全不同,它与LiB更相似。因此,EDLC模型在室温下工作良好,但在低温下却产生较差的结果。本文提出了一种新的电模型,克服了这个问题,它是在宽温度范围内的有效解决方案。仅基于五个参数,取决于极化电压和温度,所提出的模型很容易实现。通过实验测试验证了其准确性。从报告的结果还可以看出,在非常低的温度下,必须考虑电阻对电流的依赖性。 (C)2016 Elsevier B.V.保留所有权利。

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