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Investigations on Active Balancing Circuits for Supercapacitor Banks

机译:超级电容器组有源平衡电路的研究

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The present paper continues our investigations in the field of Supercapacitors or Electrochemical Double Layer Capacitors, briefly named EDLCs. The series connection of EDLCs is usual in order to obtain higher voltage levels. The inherent uneven state of charge (SOC) and manufacturing dispersions determine during charging at constant current that one of the capacitors reaches first the rated voltage levels and could, by further charging, be damaged. The balancing circuit with resistors and transistors used to bypass the charging current can be improved using the proposed circuit. We present here a complex variant, based on integrated circuit acting similar to a microcontroller. The circuit is adapted from the circuits investigated in the last 7–8 years for the batteries, especially for Lithium-ion type. The test board built around the circuit is performant, energy efficient and can be further improved to ensure the balancing control for larger capacitances.
机译:本文继续我们在超级电容器或电化学双层电容器(简称为EDLC)领域的研究。为了获得更高的电压电平,通常使用EDLC的串联连接。固有的不均匀电荷状态(SOC)和制造分散性决定了在恒定电流下充电时,其中一个电容器首先达到额定电压水平,如果进一步充电,可能会损坏这些电容器。使用所提出的电路可以改善具有电阻器和晶体管的平衡电路,该电阻器和晶体管用于绕过充电电流。我们在这里提出了一个复杂的变体,它基于类似于微控制器的集成电路。该电路改编自过去7–8年研究的电池电路,尤其是锂离子电池。围绕电路构建的测试板是高性能,高能效的,可以进一步改善以确保对较大电容的平衡控制。

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