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Simulated and experimental validation of a fuel cell-supercapacitor passive hybrid system for electric vehicles

机译:电动汽车燃料电池-超级电容器无源混合动力系统的仿真和实验验证

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The concept of a fuel cell-supercapacitor hybrid system involves the direct coupling of the two devices to achieve the same benefits of hybridisation but without the need for costly DC-DC converters. Using an experimentally validated steady state fuel cell model and a transmission line based supercapacitor model, it has been shown that the passive hybridisation allows for efficiency gains of approximately 16% compared to a pure fuel cell system. Under load, the supercapacitors meets the peak power requirement due to their lower impedance giving the FC time to ramp up. Under no load conditions, the fuel cell gradually charges the supercapacitors back to the steady state thermodynamic equilibrium potential. A fast fourier transform analysis of the respective loads under an automotive drive cycle showed that the supercapacitors act as a low pass filter, reducing the magnitude of load oscillations from the fuel cell. This therefore addresses two of the main modes of fuel cell degradation in automotive applications: rapid power cycling and no load idling.
机译:燃料电池-超级电容器混合系统的概念涉及两个设备的直接耦合,以实现相同的混合优势,但无需昂贵的DC-DC转换器。使用经过实验验证的稳态燃料电池模型和基于传输线的超级电容器模型,已证明,与纯燃料电池系统相比,被动混合可实现约16%的效率提升。超级电容器在负载下由于其较低的阻抗而满足了峰值功率要求,从而使FC有时间斜升。在无负载条件下,燃料电池将超级电容器逐渐充电回稳态热力学平衡电位。在汽车行驶周期内对各个负载的快速傅立叶变换分析表明,超级电容器充当低通滤波器,从而降低了燃料电池负载振荡的幅度。因此,这解决了汽车应用中燃料电池退化的两种主要模式:快速功率循环和无负载空转。

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