首页> 外文会议>2013 Joint International Conference on Rural Information amp; Communication Technology and Electric-Vehicle Technology >State of charge (SoC) estimation on LiFePO4 battery module using Coulomb counting methods with modified Peukert
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State of charge (SoC) estimation on LiFePO4 battery module using Coulomb counting methods with modified Peukert

机译:使用改进的Peukert的库仑计数方法估算LiFePO4电池模块的充电状态(SoC)

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Batteries have an important role in the development of electrical energy utilization, such as in renewable energy and electric vehicles. Batteries with good performance would support the devices which utilized them. Because the amount of energy stored in a battery is limited, so battery getting charging and discharging cycles. Improper charge and discharge process could decrease the battery's performance. Therefore battery management system (BMS) is very necessary so that could maintain performance of the battery at optimum condition. One of the important aspect in BMS is state of charge (SoC), which indicate the amount of energy left in the battery. In this work, SOC estimation calculated using Coulomb Counting method which is calculate and compare the electric charge that came in and came out the battery. Upon Coulomb counting on discharging and charging process, battery's SoC estimated by different ways, namely calculate the Peukert's effect and calculate charging efficiency, respectively. Modified Peukert relationship includes current rate parameters are affecting discharge capacity of a battery. Higher Peukert constant would lead to decreasing of operational battery module voltages. Moreover, it could be studied that Peukert only has an effect in the changes of discharge capacity at zero point of SoC. Furthermore, from experimental result it has been known that energy stored in the battery might be has different deep of discharge depends on Peukert constant.
机译:电池在电能利用的发展中具有重要作用,例如在可再生能源和电动汽车中。性能良好的电池将支持使用它们的设备。由于电池中存储的能量有限,因此电池开始充放电循环。充电和放电过程不当会降低电池的性能。因此,电池管理系统(BMS)非常必要,这样才能在最佳条件下保持电池性能。 BMS中的重要方面之一是充电状态(SoC),它指示电池中剩余的电量。在这项工作中,使用库仑计数法计算出的SOC估算值是计算并比较进出电池的电荷。在库仑计算放电和充电过程时,电池的SoC可以通过不同的方式进行估算,即分别计算Peukert效应和计算充电效率。修改后的Peukert关系包括电流速率参数,这些参数正在影响电池的放电容量。较高的Peukert常数会导致电池模块工作电压降低。而且,可以研究Peukert仅对SoC零点处的放电容量变化有影响。此外,从实验结果得知,存储在电池中的能量可能具有不同的放电深度,这取决于Peukert常数。

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