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An improved Ampere-hour method for battery state of charge estimation based on temperature, coulomb efficiency model and capacity loss model

机译:基于温度,库仑效率模型和容量损失模型的电池电流状态估计的改进安培小时法

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Coulomb efficiency and available capacity affect the precision of Ampere-hour method. Both coulomb efficiency and available capacity vary with temperature and discharge current rate. In this study, some experiments of a 27Ah Nickel Metal Hydride battery were undertaken to determinate the coulomb efficiency. These experiments were undertaken at -18°C, -12°C, 0 °C, 25°C with 1/3C, 1C, 3C charge rate and 1/3C discharge rate. Then, an improved coulomb efficiency model was proposed, which is based on temperature and charge rate. Moreover, an available capacity loss model was built based on experiments of 1/3C discharge rate at -18°C, -12°C, 0°C, 25°C. In addition, an improved Ampere-hour method based on temperature, coulomb efficiency and capacity loss model was built to estimate battery state of charge. The proposed method is verified by experiment and the result shows good precision.
机译:库仑效率和可用容量影响安培小时法的精度。库仑效率和可用容量都随温度和放电电流速率而变化。在这项研究中,对27Ah镍金属氢化物电池进行了一些实验以确定库仑效率。这些实验是在-18°C,-12°C,0°C,25°C,1 / 3C,1C,3C充电速率和1 / 3C放电速率下进行的。然后,基于温度和电荷速率,提出了一种改进的库仑效率模型。此外,基于在-18°C,-12°C,0°C,25°C下1 / 3C放电速率的实验建立了可用的容量损失模型。此外,建立了一种基于温度,库仑效率和容量损失模型的改进的安培小时方法,以估算电池的充电状态。实验验证了该方法的正确性。

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