Automotive Engineering ›› 2022, Vol. 44 ›› Issue (4): 535-544.doi: 10.19562/j.chinasae.qcgc.2022.04.009
Special Issue: 新能源汽车技术-动力电池&燃料电池2022年
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Chuan Fang1,Dian Yuan1,Yangbin Shao2,Liangfei Xu2,Feiqiang Li1,Zunyan Hu1,Jianqiu Li2(),Bao Zhou1,Wei Dai3
Received:
2021-11-10
Revised:
2022-01-17
Online:
2022-04-25
Published:
2022-04-22
Contact:
Jianqiu Li
E-mail:lijianqiu@tsinghua.edu.cn
Chuan Fang,Dian Yuan,Yangbin Shao,Liangfei Xu,Feiqiang Li,Zunyan Hu,Jianqiu Li,Bao Zhou,Wei Dai. Technical Breakthrough of New Generation Fuel Cell System for Winter Olympics Application Environment[J].Automotive Engineering, 2022, 44(4): 535-544.
1 | 郑俊生,戴宁宁,赵坤,等. 基于示范运营的燃料电池汽车性能衰退分析方法[J]. 储能科学与技术,2021,10(2):577-585. |
ZHENG J S, DAI N N, ZHAO K, et al. Performance degradation analysis methods for fuel cell vehicles based on demonstration operation [J]. Energy Storage Science and Technology, 2021, 10(2): 577-585. | |
2 | 王菊,尤可为,于丹. 燃料电池公共汽车在北京和上海载客示范评价[J]. 汽车技术,2013(10):19-22. |
WANG J, YOU K W, YU D. Evaluation of fuel cell bus demonstration in Beijing and Shanghai [J]. Automobile Technology, 2013(10):19-22. | |
3 | 滕欣余,朱成,于丹,等. 京津冀地区燃料电池汽车示范运行研究[J]. 综合运输,2021,43(2):122-132. |
TENG X Y, ZHU C, YU D, et al. Fuel cell vehicle demonstration operation in Beijing-Tianjin-Hebei region [J]. China Transportation Review, 2021, 43(2): 122-132. | |
4 | 滕欣余,于丹,朱成,等. 佛山市燃料电池汽车示范运行研究[J]. 综合运输,2021,43(4):1-8. |
TENG X Y, YU D, ZHU C, et al. Fuel cell vehicle demonstration operation in Foshan [J]. China Transportation Review, 2021, 43(4): 1-8. | |
5 | 张翼翀,甘全全. 一种立式片层结构柔性石墨极板的高速生产系统:2019203448802[P]. 2020-02-07. |
ZHANG Y Z, GAN Q Q. A high speed production system for vertical laminated flexible graphite electrode plate:2019203448802 [P]. 2022-02-07. | |
6 | HUA J F,XU L F,LIN X F,et al. Modeling and experimental study of PEM fuel cell transient response for automotive applications [J]. Tsinghua Science and Technology,2009,14(5):639-645. |
7 | ZHENG Q,CHEN Z,GAO Z,et al. A practical approach to disturbance decoupling control [J]. Control Engineering Practice,2009,17(9):1016-1025. |
8 | 李建秋,郭迪,徐梁飞,等. 燃料电池氢气供给控制方法、计算机设备和储存介质:2019101050528[P]. 2020-01-14. |
LI J Q, GUO D, XU L F, et al. Control method, computer equipment and storage medium for fuel cell hydrogen supply system:2019101050528[P]. 2020-01-14. | |
9 | 盛有冬,郭伟静,姜海林. 一种气体供应系统自学习控制方法:2018112498181[P]. 2020-08-25. |
SHENG Y D, GUO W J, JIANG H L. A self-learning control method for gas supply system:2018112498181[P]. 2020-08-25. | |
10 | JIANG F M,WANG C Y,CHEN K S. Current ramping:a strategy for rapid start-up of PEMFCs from subfreezing environment [J].Journal of The Electrochemical Society,2010,157(3):342-347. |
11 | SINHA P K, WANG C Y. Gas purge in a polymer electrolyte fuel cell [J]. Journal of The Electrochemical Society, 2007, 154: B1158-B66. |
12 | 胥巍巍,张松,童涛. 一种用于燃料电池堆的热处理系统:2018203560723[P]. 2019-01-04. |
XU W W, ZHANG S, TONG T. A cooling treatment system for fuel cell stack:2018203560723[P]. 2019-01-04. |
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