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首页> 外文期刊>Journal of power sources >On-line monitoring of lead-acid batteries by galvanostatic non-destructive technique
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On-line monitoring of lead-acid batteries by galvanostatic non-destructive technique

机译:恒电流无损在线监测铅酸电池

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摘要

Measurements of charge-acceptance, internal resistance, voltage and self-discharge of a battery reflect its state-of-health (SOH). The galvanostatic non-destructive technique (GNDT) can be used to monitor the SOH of a battery by analyzing its impedance parameters, namely ohmic resistance, charge-transfer resistance and Intel-facial capacitance. In this technique, the battery is discharged galvanostatically at a substantially low-rate over a short duration, wherein the state-of-charge (SOC) of the battery is not affected. It has been possible to obtain charge-transfer resistance and double-layer capacitance values for both positive and negative plates of a commercial grade 6-V/4-Ah valve-regulated lead-acid battery during its dynamic discharge. The resistive components of the battery are found to be minimum at state-of-charge values between 0.2 and 0.9. The study shows that the optimum performance of the VRLA battery can be achieved at SOC values between 0.2 and 0.9. The ohmic resistance of the battery displays a linear variation with logarithmic values of its SOC. The technique provides an attractive tool for on-line monitoring of lead-acid batteries.
机译:电池的充电接受度,内部电阻,电压和自放电的测量反映了其健康状态(SOH)。恒电流非破坏性技术(GNDT)可通过分析其阻抗参数(即欧姆电阻,电荷转移电阻和Intel面电容)来监视电池的SOH。在该技术中,在短时间内以基本上低的速率对电池进行恒电流放电,其中电池的充电状态(SOC)不受影响。在动态放电过程中,有可能获得商用级6-V / 4-Ah阀控式铅酸蓄电池的正负极板的电荷转移电阻和双层电容值。发现电池的电阻成分在0.2至0.9的荷电状态下最小。研究表明,在SOC值为0.2至0.9的情况下,可以实现VRLA电池的最佳性能。电池的欧姆电阻随SOC的对数值显示线性变化。该技术为在线监测铅酸电池提供了一种有吸引力的工具。

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