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首页> 外文期刊>Journal of Energy Storage >Lithium-ion battery State-of-Latent-Energy (SoLE): A fresh new look to the problem of energy autonomy prognostics in storage systems
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Lithium-ion battery State-of-Latent-Energy (SoLE): A fresh new look to the problem of energy autonomy prognostics in storage systems

机译:锂离子电池状态潜能(鞋底):储存系统中能源自治预测问题的新态度

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摘要

State-of-Charge (SoC) is commonly defined as a ratio between the available charge and the battery capacity. Unfortunately, SoC has been misguidedly interpreted as an indicator of autonomy. Despite its widespread use, this concept has two critical flaws that affect the quality of estimates for energy availability in lithium ion batteries: (i) SoC is typically computed as a percentage, but the corresponding normalization constant is difficult to compute, and (ii) SoC estimates do not acknowledge the fact that the total amount of energy that can be extracted from the battery depends significantly on the future battery usage profile (i.e., discharge current). To overcome these issues, this article introduces a novel metric for battery energy autonomy: State of-Latent-Energy (SoLE) [kWh]. Unlike SoC-based approaches, SoLE estimates directly the amount of available useful energy at the battery, without requiring a normalization constant, and thus limiting the uncertainty associated with the estimation problem. The implementation of SoLE estimators requires two major steps: (i) to estimate the amount of energy delivered previously, and (ii) to prognosticate future battery voltage trajectories to infer the End-of-Discharge (EoD) time and calculate the remaining useful energy. Therefore, SoLE not only incorporates information on how the battery was discharged so far, but also a probabilistic characterization of how it may be operated. The proposed SoLE concept is validated using data from actual usage of an electric bike, with promising results.
机译:充电状态(SOC)通常被定义为可用充电和电池容量之间的比率。不幸的是,SoC被杀被误认为是自治的指标。尽管其广泛使用,但该概念有两个临界缺陷,影响锂离子电池中的能量可用性估算质量:(i)SoC通常被计算为百分比,但相应的归一化常数难以计算,并且(ii)难以计算SOC估计不承认从电池中提取的总能量总量在显着上取决于未来的电池使用配置文件(即放电电流)。为了克服这些问题,本文介绍了电池能源自治的新颖度量:潜在能量(鞋底)[kWh]。与基于SoC的方法不同,唯一的估计在电池中的可用能量的量直接估计,而不需要归一化常数,从而限制与估计问题相关的不确定性。唯一估计人的实施需要两个主要步骤:(i)估计以前提供的能量量,并预测未来的电池电压轨迹以推断出放电结束(EOD)时间并计算剩余的有用能量。因此,唯一的不仅纳入了关于电池的方式到目前为止如何排出的信息,而且还具有如何操作的概率表征。使用电动自行车实际使用的数据验证所提出的唯一概念,具有前途的结果。

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