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A Voltage-Gradient Based Gas Gauge Platform for Lithium-ion Batteries

机译:用于锂离子电池的电压梯度的气体计平台

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A supplementary compensator for Texas Instruments gauge IC state-of-charge estimation for lithium-ion batteries is proposed and a hardware platform is designed to verify the proposed compensation. A sudden change in TI gauge SOC estimation sometimes happens near the end section of the battery discharge curves. The reason is that there are non-modification regions posed by the gauge due to larger parameter variation caused larger SOC estimation errors. By designing the OCV extraction hardware and find that the difference of slopes has a big drop when approaching to 50% SOC and the value can be identified. The slope of 50% SOC is a fixed value which can be applied to SOC compensation. By analyzing the discharging curves for many vendors' lithium-ion batteries, we find that there are two conditions can be applied to compensate the SOC estimation. One is the specific difference of voltage slopes during discharging and the other is a specific discharging slope when SOC equals 50%. These check points can provide nearly consistent estimation of SOC for batteries with different cycle times and different ambient temperatures. An add-on platform is designed with the embedded voltage-gradient checkpoint and EMF table and the experimental results show that the SOC estimation accuracy is improved. The accuracy of SOC estimation with the help of the proposed compensation is increasing up to 11% under different variant current profiles.
机译:提出了一种用于德克萨斯仪表仪表IC的锂离子电池的充电估计的补充剂,设计了硬件平台以验证所提出的补偿。 Ti Cauge SOC估计的突然变化有时会发生在电池放电曲线的端部附近。原因是由于较大的参数变化导致较大的SOC估计误差,仪表存在非修改区域。通过设计OCV提取硬件并发现当接近50%SOC时,斜坡的差异具有大滴,并且可以识别该值。 50%SOC的斜率是一个固定值,可以应用于SOC补偿。通过分析许多供应商锂离子电池的放电曲线,我们发现有两个条件可以应用来补偿SOC估计。一个是在放电期间的电压斜率的具体差异,而另一个是当SOC等于50%时的特定放电斜率。这些检查点可以为具有不同循环时间和不同环境温度的电池提供几乎一致的SOC估计。附加平台采用嵌入的电压梯度检查点和EMF表设计,实验结果表明SOC估计精度得到改善。在不同变体电流配置文件下,借助于所提出的补偿的帮助的SOC估计的准确性增加到11%。

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