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Performance analysis and modeling of three energy storage devices for electric vehicle applications over a wide temperature range

机译:宽温度范围内电动汽车应用三种能量存储装置的性能分析与建模

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As the electric vehicles (EVs) inevitably operate over a wide temperature range, performance analysis and modeling of the energy storage devices (ESDs) at different temperatures are essential for the design of the energy control and management system. However, comprehensive studies of the ESDs and their suitable models over a wide temperature range are rarely reported. In this paper, three kinds of commercial ESDs including the Li(NiCoMn)O-2/Graphite (NCM) battery, the LiMn2O4/Li4Ti5O12 (LTO) battery and the electrical double-layer supercapacitor are investigated. Their dynamic performances over a wide temperature range are analyzed. In order to determine the optimal mathematical models for the dynamic characteristics description, a comprehensive comparison of 13 equivalent circuit models is implemented on the ESDs. The results revealed that the performance of the NCM and LTO batteries are easily affected by temperature, while the performance of the supercapacitor is almost unaffected by temperature and maintains excellent power capability at the low temperature. For the dynamic characteristics models, the 3rd-order resistor-capacitor (RC) model with current depended factor, the 3rdorder RC model and the two-branch model outperform the other models as simulating the dynamic characteristics of the NCM battery, the LTO battery and the supercapacitor, respectively, considering the accuracy and applicability for a wide temperature range. (c) 2019 Elsevier Ltd. All rights reserved.
机译:由于电动车辆(EVS)在宽温度范围内不可避免地操作,在不同温度下的能量存储装置(ESDS)的性能分析和建模对于能量控制和管理系统的设计是必不可少的。然而,很少报道对宽温度范围内的ESDS及其合适模型的综合研究。本文研究了三种商业ESD,包括Li(NicomN)O-2 /石墨(NCM)电池,LiMn2O4 / Li4Ti5O12(LTO电池和电双层超级电池。分析了它们在宽温度范围内的动态性能。为了确定用于动态特性描述的最佳数学模型,在ESD上实现了13等效电路模型的全面比较。结果表明,NCM和LTO电池的性能很容易受到温度的影响,而超级电容器的性能几乎不受温度影响,并在低温下保持优异的功率能力。对于动态特性模型,具有电流依赖因子的3rd阶电容器(RC)模型,3RDORDER RC模型和双分支模型优于模拟NCM电池的动态特性,LTO电池和超级电容器分别考虑到宽温度范围的精度和适用性。 (c)2019 Elsevier Ltd.保留所有权利。

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