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Study of the 'coup de fouet' of lead-acid cells as a function of their state-of-charge and state-of-health

机译:铅酸电池“电量变化”作为其荷电状态和健康状态的函数的研究

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摘要

This paper shows some new results concerning the influence of operating conditions on the phenomenon known as "coup de fouet", a voltage drop which occurs at the beginning of the discharge of lead-acid batteries (LABs) previously fully charged. Even if this phenomenon is often suggested for diagnosing the state-of-charge (SOC) and the state-of-health (SOH) of LABs, it remains badly understood. Furthermore, this study deals with other transient voltage responses of LABs to galvanostatic polarisations that depend on their SOC, either on discharge or on charge. A special attention is paid to a phenomenon occurring at the beginning of the charge of these batteries after a full discharge, and which can be compared to the "coup de fouet" on many aspects. Without giving a final answer concerning the origin of these two phenomena, our results present some contradictions with the explanation generally accepted today. It is, also, shown that the study of these phenomena constitutes an original means to investigate the full-charge and full-discharge conditions, together with other characterization methods like impedance spectroscopy. On the other hand, results presented show that it is not possible to connect the "coup de fouet" parameters to the battery capacity without taking care of the high-SOC level, the rest time preceding the discharge, and the depth of the latter discharge, which compromises the reliability of this method suggested in several papers and patents, in particular in applications with irregular cyclings.
机译:本文显示了一些新的结果,这些结果涉及工作条件对被称为“ coup de fouet”现象的影响,该现象是在先前充满电的铅酸电池(LAB)放电开始时出现的电压降。即使通常建议使用这种现象来诊断LAB的荷电状态(SOC)和健康状态(SOH),也仍然很难理解。此外,这项研究还涉及了LAB对恒电流极化的其他瞬态电压响应,这些瞬态电压依赖于其SOC(放电或充电)。要特别注意这些电池在完全放电后开始充电时发生的现象,该现象可以在许多方面与“ coup de fouet”进行比较。在没有给出关于这两种现象起源的最终答案的情况下,我们的结果与今天普遍接受的解释存在一些矛盾。还表明,对这些现象的研究构成了研究全充电和全放电条件以及阻抗谱等其他表征方法的原始手段。另一方面,给出的结果表明,如果不考虑高SOC水平,放电前的休息时间以及放电后的深度,则不可能将“ coup de fouet”参数连接到电池容量,这损害了几篇论文和专利中建议的此方法的可靠性,特别是在不规则循环的应用中。

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