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An Accurate Lithium-Ion Battery Gas Gauge Using Two-Phase STC Modeling

机译:基于两相STC建模的精确锂离子电池电量监测计

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The lithium-ion (Li-ion) battery is a time-varying, nonlinear component. Its discharge characteristic is dependent on discharge current, loading change scheme, ambient temperature, and initial state-of-charge (SoC), and hence its remaining time can vary with the discharge operating conditions in a manner of nonlinear relationship. The non-linearity behavior makes the accurate gas-gauge of Li-ion battery very difficult. This paper presents an efficient scheme to simplify the estimation of battery service time with high-degree of accuracy. According to the typical discharge characteristic of Li-ion batteries, we applied a two-phase single-time-constant (STC) model for the gas-gauging strategy and parameterize the discharge operating conditions in terms of the first-phase gradient, the knee voltage, and the second-phase gradient, instead of using complex curve-fitting equations. As shown in the experimental results, the accuracy of predicted remaining time is less than 1% for constant current cases, and 10% for loading change cases.
机译:锂离子(Li-ion)电池是随时间变化的非线性组件。它的放电特性取决于放电电流,负载变化方案,环境温度和初始充电状态(SoC),因此,其剩余时间会随着放电工作条件的变化而呈非线性关系。非线性行为使锂离子电池的准确电量监测变得非常困难。本文提出了一种有效的方案,可以以较高的准确度简化电池使用时间的估算。根据锂离子电池的典型放电特性,我们将两相单时间常数(STC)模型用于电量监测策略,并根据第一相梯度,拐点和参数来设置放电工作条件电压和第二相梯度,而不是使用复杂的曲线拟合方程。如实验结果所示,对于恒定电流情况,预测的剩余时间的准确度小于1%,对于负载变化情况,则为10%。

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