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Hybridization of Battery, Supercapacitor and Hybrid Capacitor for Electric Vehicles

机译:电动汽车电池,超级电容器和混合电容器的混合动力

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This paper proposes a novel topology of hybridizing battery, supercapacitor and hybrid capacitor for optimum utilization of energy in electric vehicles. Hybridization of energy storage has been the theme of much research in the field of power electronics as it is an effective economic solution towards improving the utilization of energy. Batteries have fallen short in comparison to both supercapacitors and hybrid capacitors because of their low power density and limited charge-discharge cycle. Most of the previous research in this field focuses on hybridizing either supercapacitor or hybrid capacitor with the battery but not both. This paper deals with the combination of both supercapacitor and hybrid capacitor with the battery thus addressing the problem of the lack of autonomy between two recharge points in supercapacitors, three hybridization techniques are considered and the balance point of the supercapacitor and hybrid capacitor banks is presented. The prospects of using a multiple-input DC-DC converter is also analyzed. Experimental results are presented to validate the proposed topology. The application of the novel hybridization of the three energy storage devices can be extended to other applications having a load profile with high crest factors.
机译:本文提出了一种混合电池,超级电容器和混合电容器的拓扑结构,以优化电动汽车的能量利用。储能混合技术已成为电力电子领域众多研究的主题,因为它是提高能源利用率的有效经济解决方案。与超级电容器和混合电容器相比,电池均不足,因为它们的功率密度低且充电-放电周期有限。该领域以前的大多数研究都集中于将超级电容器或混合电容器与电池混合,而不是两者都混合。本文研究了超级电容器和混合电容器与电池的结合,从而解决了超级电容器中两个充电点之间缺乏自治的问题,考虑了三种混合技术,提出了超级电容器和混合电容器组的平衡点。还分析了使用多输入DC-DC转换器的前景。提出实验结果以验证所提出的拓扑。三种储能装置的新型混合的应用可以扩展到具有高波峰因数的负载曲线的其他应用。

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