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Fuel cell hybrid electric vehicle (FCHEV): Novel fuel cell/SC hybrid power generation system

机译:燃料电池混合动力电动汽车(FCHEV):新型燃料电池/ SC混合动力发电系统

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A fuel cell hybrid electric vehicle (FCHEV) is more advantageous compared to a gasoline-powered internal combustion engine based vehicle or a traditional hybrid electric vehicle (HEV) because a FCHEV only uses one electric motor instead of an internal combustion engine or an electric motor in combination with an internal combustion engine. This study proposes a novel fuel cell (FC)/supercapacitor (SC) hybrid power source to be utilized in FCHEVs. The power source includes a 90 kW proton exchange membrane fuel cell (PEMFC) stack used as the main power source, and a 600 F SC bank used as the auxiliary energy storage device. A prototype of the FC/SC hybrid power source has been constructed, and experimental verifications are presented that explicitly substantiate having a power efficiency of 96.2% around the rated power, highly accurate DC-link voltage regulation and producing an appropriate three-phase stator current supplied to the traction motor by using PWM technique are the main contributions of this work. Providing a maximum speed of 158 km/h, 0-100 km/h acceleration in 12.2 s and a cruising range of 435 km for a FCHEV with the weight of 1880 kg are the other advantages. The proposed FC/SC hybrid power source is also compared to the state of the art of all kinds of power sources used in FCHEVs that clearly demonstrates its better performances such as higher power efficiency, speed and acceleration.
机译:与基于汽油动力的内燃发动机的车辆或传统的混合动力车辆(HEV)相比,燃料电池混合动力车辆(FCHEV)更具优势,因为FCHEV仅使用一个电动机而不是内燃机或电动机结合内燃机。这项研究提出了一种新型燃料电池(FC)/超级电容器(SC)混合动力源,可用于FCHEV。该电源包括一个90 kW的质子交换膜燃料电池(PEMFC)堆栈用作主要电源,另一个600 F SC的电池组用作辅助储能装置。构造了FC / SC混合电源的原型,并进行了实验验证,明确证实了其在额定功率附近具有96.2%的功率效率,高精度的直流母线电压调节并产生适当的三相定子电流通过PWM技术提供给牵引电机的电源是这项工作的主要贡献。另一个优点是FCHEV的最大速度为158 km / h,在12.2 s内可加速0-100 km / h,续航里程为435 km,重量为1880 kg。还将拟议的FC / SC混合电源与FCHEV中使用的各种电源的现有技术进行比较,从而清楚地证明了其更好的性能,例如更高的功率效率,速度和加速度。

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