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Comparison of internal parameters varied by environmental tests between high-power series/parallel battery packs with different shapes

机译:通过不同形状的高功率系列/并联电池组之间的环境测试变化的内部参数的比较

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This study elaborately analyzes the lithium-ion battery pack in series and parallel connection installed in space applications through environmental tests that typically composed of three tests: half-sine shock, sine vibration and random vibration. These tests are well conducted based on the internal certification standard and the space industry standard. Above all, from basic equivalent electrical circuit modeling of the high-power 18650-HE4 cell based series/parallel battery packs of 4S4P with rectangular and cube types, some internal parameters were minutely extracted and compared to check which environmental test adversely affects the battery pack's electrochemical characteristics and its electrical performance. Moreover, maximum/minimum cell voltages and their differences measured in four series point and internal temperature measured in five points inside the two battery packs are compared. For reference, in order to analyze the impact of the battery pack clearly, this study further analyzed some single cells with various impacts through identical environmental test profiles. Above analyses and comparisons can help to get a solution for finding a suitable shape for space application with a parameter change rate according to the different shape of the battery pack. In particular, the necessity of a modified equivalent electrical circuit modeling of the battery pack varied by environmental tests can be sufficiently suggested. Accurate information on internal parameters of the cell and battery pack contributes to the high-fidelity state-of charge (SOC) estimation and state-of-health (SOH) prediction in vibration and shock environments such as electric vehicle (EV), satellites and space-launch vehicles. (C) 2018 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
机译:本研究通过通常由三次测试组成的环境测试精心分析串联和并联连接,并通过通常由三次测试组成的环境测试:半正弦冲击,正弦振动和随机振动。这些测试是根据内部认证标准和空间行业标准进行的。最重要的是,从基于高功率18650-HE4单元的基本相同电路建模的基于矩形和立方体类型的高功率18650-HE4单元的系列/并联电池组,将一些内部参数进行了细微提取并进行比较,以检查哪种环境测试对电池组产生不利影响电化学特性及其电气性能。此外,比较了在两个电池组内的五个点测量的四个串联点和内部温度中测量的最大/最小电池电压及其差异。为了参考,为了清楚地分析电池组的冲击,本研究进一步通过相同的环境测试型材对一些具有各种影响的单个细胞进行了分析。上述分析和比较可以帮助获得用于在电池组的不同形状的参数变化率找到适当的空间应用形状的解决方案。特别地,可以充分建议通过环境测试变化的电池组的修改等效电路建模的必要性。关于电池组和电池组内部参数的准确信息有助于高保真状态充电(SOC)估计和健康状态(SOH)在振动和冲击环境中预测,例如电动车辆(EV),卫星和空间发动车辆。 (c)2018年韩国工程和工程化学学会。 elsevier b.v出版。保留所有权利。

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