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A State-of-Charge and Capacity Estimation Algorithm for Lithium-ion Battery Pack Utilizing Filtered Terminal Voltage

机译:利用滤波终端电压的锂离子电池组的充电和容量估计算法

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In electric vehicle (EV) and hybrid electric vehicle (HEV) application, accurate information of state-of-charge (SOC) and capacity of each cell are required for elaborate SOC/capacity estimation algorithm of the battery pack. However, the measurement of the states of all cells using sophisticated algorithms increases the computation time beyond practicality, because the computation time required for the SOC/capacity estimation of the battery pack is directly affected by the number of unit cells. In this work, a simple SOC and capacity estimation algorithm for Li-ion battery pack is newly proposed by using filtered terminal voltage. The SOC estimation algorithm using filtered terminal voltage extracts an estimated current information from the terminal voltage of the battery pack through equivalent-circuit model (ECM)-based filters without sensing the current. Consequently, it drastically reduces computational steps for the SOC estimation algorithm. With the fact that all the current flowing through the series-connected cells in pack are identical, the estimated current value of each cell should be identical. As a result, it can be known that this algorithm enables us to obtain the relative proportion of SOC/capacity information of each cells and battery pack with minimal complexity increase. To validate the performance of the proposed approach, a scaled-down HEV profile is used for a pack consists of twelve 18650 series-connected Li-ion batteries (12S1P). The experimental results verify the performance of the proposed battery pack SOC estimation algorithm.
机译:在电动车辆(EV)和混合动力电动车辆(HEV)应用中,需要精确地信息电池组的详细信息/容量估计算法所必需的每种电池的电池状态(SOC)和容量。然而,使用复杂算法的所有单元的态的测量增加了超出实用性的计算时间,因为电池组的SOC /容量估计所需的计算时间直接受到单位单元的数量的影响。在这项工作中,通过使用过滤的端电压来新提出了一种简单的SOC和容量估计算法。使用滤波终端电压的SOC估计算法通过等效电路模型(ECM)的滤波器从电池组的端电压提取估计的电流信息,而不感测电流。因此,它大大减少了SOC估计算法的计算步骤。因此,流过Pack中的串联连接电池的所有电流是相同的,每个单元的估计电流值应该是相同的。结果,可以知道该算法使我们能够获得每个单元的SoC /容量信息的相对比例和电池组,并且具有最小的复杂性增加。为了验证所提出的方法的性能,用于包装的缩小HEV轮廓由12个18650系列连接的LI离子电池(12S1P)组成。实验结果验证了所提出的电池组SOC估计算法的性能。

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