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Design and implementation of Li-ion battery charger using state-of-charge estimation with fuzzy temperature control

机译:带有模糊温度控制的荷电状态估计的锂离子电池充电器的设计与实现

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In this paper, a novel lithium-ion (Li-ion) battery charger is proposed; the proposed charger first takes the state of charge (SOC) information into account and adjusts the charging current accordingly. In order to further improve the charging efficiency, a fuzzy-logic-control-based (FLC-based) technique is also employed. The proposed FLC takes the temperature rise and the gradient of temperature rise of battery into account, and fine-tune the charging current accordingly. In this paper, the power stage is implemented using the synchronous-rectified buck converter. The digital compensator, digital filter and the SOC adaptive algorithm is implemented using the dsPIC digital signal controller from Microchip Corp; while the fuzzy logic controller is realized using the LabVIEW on a personal computer. In addition to the hardware, a graphical user interface is also presented. According to the experimental results, the charging efficiency of the proposed system can be increased and the performance of the proposed charger can be improved. Comparing to conventional constant-current constant-voltage (CC-CV) method, the proposed charging technique can reduce the average temperature rise for 23.2% while maintaining similar charging time.
机译:本文提出了一种新型锂离子(锂离子)电池充电器;所提出的充电器首先考虑到充电状态(SOC)信息并相应地调整充电电流。为了进一步提高充电效率,还采用了一种基于模糊控制的(FLC基)技术。所提出的FLC考虑了电池的温度升高和升温,并相应地微调充电电流。在本文中,使用同步整流降压转​​换器实现功率级。数字补偿器,数字滤波器和SOC自适应算法使用来自Microchip Corp的DSPIC数字信号控制器实现;虽然模糊逻辑控制器使用个人计算机上的LabVIEW实现。除硬件外,还呈现了图形用户界面。根据实验结果,可以提高所提出的系统的充电效率,并且可以提高所提出的充电器的性能。比较与传统的恒流恒压(CC-CV)方法相比,所提出的充电技术可以降低23.2%的平均温度升高,同时保持类似的充电时间。

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