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Application of supercapacitors in electric traction storage systems

机译:超级电容器在电力牵引储能系统中的应用

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Energy storage systems (ESS) are based on electrochemical batteries and supercapacitors (SC). SCs have a lower energy density compared to batteries, but have an advantage over them in power density. The combined use of the two in a hybrid ESS (HESS) gives both high energy density and high power density of ESSs. Fractional-order impedance describes the SC dynamics better than commonly used integer order impedance. Such a description can be based on the dielectric relaxation equations e.g. Cole-Cole equation used in this work. The paper compares results of the impedance approximation of a number of SC’s with various fractional and integer models, on the basis of which the time responses are analysed. The methods of capacitance and ESR measurement recommended by the IEC standard are examined. They are compared with the methods used in practice by SC producers. The problem of energy losses in ESS with respect to charging/discharging current pulses is presented. A proper ESS designing requires an accurate approximation of the SC impedance over the frequency band in which the dominant part of the power spectrum of current pulses is located.
机译:储能系统(ESS)基于电化学电池和超级电容器(SC)。与电池相比,SC具有较低的能量密度,但在功率密度方面比它们具有优势。混合ESS(HESS)中两者的组合使用可提供ESS的高能量密度和高功率密度。分数阶阻抗比常用的整数阶阻抗更好地描述了SC动态。这样的描述可以基于介电弛豫方程,例如。这项工作中使用了Cole-Cole方程。本文将各种SC的阻抗逼近结果与不同的分数和整数模型进行了比较,在此基础上分析了时间响应。检验了IEC标准推荐的电容和ESR测量方法。将它们与SC生产商实际使用的方法进行比较。提出了相对于充电/放电电流脉冲的ESS中的能量损失问题。正确的ESS设计需要在电流脉冲功率谱的主要部分所处的频带上精确地近似SC阻抗。

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