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On-board Impedance Diagnostics Method of Li-ion Traction Batteries Using Pseudo-Random Binary Sequences

机译:伪随机二值序列的锂离子动力电池车载阻抗诊断方法

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This work deals with the on-board impedance measurements of Li-ion batteries on hybrid electric vehi-cles/electric vehicles by using pseudo-random binary sequences (PRBSs). The impedance of the battery can be related to its state of charge (SOC) and state of health (SOH). However the battery impedance is frequency dependent which makes it difficult to perform the measurement on a pack level in the vehicles. By using an excitation signal like PRBS, it is possible to extract the impedance information of the battery packs. Experiments are performed with different set-ups to verify the PRBS method. A non-parametric method is used to process the data and extract the impedance measurement. Experiments in the laboratory at different state of charge levels and temperatures are made to validate the PRBS method. It is shown that the PRBS method can produce a valid electrochemical impedance spectrum in a limited frequency range, similar to the result from a high accuracy laboratory impedance analyzer. The method is stable at different SOC levels and temperatures. A simulation of the excitation signal in the vehicle is performed where the electric motor is used as the load. It shows that it is possible to some extent to use the driveline in a hybrid electric vehicle/electric vehicle to perform an on-board battery impedance measurement.
机译:这项工作通过使用伪随机二进制序列(PRBS)处理混合动力电动汽车/电动汽车上锂离子电池的车载阻抗测量。电池的阻抗可以与其充电状态(SOC)和健康状态(SOH)相关。然而,电池阻抗取决于频率,这使得难以在车辆的包装水平上执行测量。通过使用诸如PRBS的激励信号,可以提取电池组的阻抗信息。使用不同的设置进行实验以验证PRBS方法。非参数方法用于处理数据并提取阻抗测量值。进行了实验室在不同充电水平和温度状态下的实验,以验证PRBS方法。结果表明,PRBS方法可以在有限的频率范围内产生有效的电化学阻抗谱,类似于高精度实验室阻抗分析仪的结果。该方法在不同的SOC水平和温度下均稳定。在将电动机用作负载的情况下,对车辆中的激励信号进行仿真。它表明在某种程度上可以在混合动力电动汽车/电动汽车中使用传动系来执行车载电池阻抗测量。

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