Design and experimental verification of a fuel cell/supercapacitor passive configuration for a light vehicle
发表时间:2021-02-22     阅读次数:     字体:【


摘要

The fuel cell/supercapacitor passive configuration without using any DC/DC converters is promising in automotive applications as it can downsize the fuel cell stack, maintain the peak power capability, improve the system efficiency, and remove the need of additional control. This paper presents the design and characterization of a fuel cell/supercapacitor passive hybrid system for a 60 V light vehicle. A detailed design procedure for the passive hybrid test platform is presented with each component modelled and experimentally verified. The voltage error of the fuel cell and the supercapacitor model in the steady state is within 2% and 3%, respectively. Experimental results also validate the function of the passive configuration under conditions of a step load and a drive cycle. The simulation model of the passive hybrid system matches the measurements when a step load current is applied. The supercapacitor provides the transient current due to its smaller resistance while the fuel cell handles the steady state current, which makes it possible to downsize the fuel cell stack. For the drive cycle examined in this paper, the fuel cell stack can be downsized to one third of the load peak power.


部分图片:

图1 Passive hybrid fuel cell/supercapacitor powertrain.

图2 Test platform for supercapacitor bank.

引文信息

Q. Xun, S. Lundberg, Y. Liu, Design and experimental verification of a fuel cell/supercapacitor passive configuration for a light vehicle, Journal of Energy Storage. 33 (2021) 102110. https://doi.org/10.1016/j.est.2020.102110.(下载链接

其他相关论文:


上一篇:没有了
下一篇:A real-time energy management control strategy for battery and supercapacitor hybrid energy storage systems of pure electric vehicles
0
联系地址:北京市海淀区中关村南大街5号北京理工大学   Copyright  ©  2020-   先进储能科学与应用联合实验室  All Rights Reserved.网站地图
友情链接: 新能源与智能载运期刊    北京理工大学    机械与车辆学院