Control-oriented dynamic fuzzy model and predictive control for proton exchange membrane fuel cell stack

被引:0
|
作者
李曦 [1 ]
邓忠华 [1 ]
曹广益 [2 ]
朱新坚 [2 ]
卫东 [2 ]
机构
[1] Department of Control Science and Engineering, Huazhong University of Science and Technology
[2] Department of Automation, Shanghai Jiaotong University
关键词
proton exchange membrane fuel cell; nonlinear predictive control; temperature; stoichiometric oxygen;
D O I
暂无
中图分类号
TM911.4 [燃料电池];
学科分类号
0808 ;
摘要
Proton exchange membrane fuel cell (PEMFC) stack temperature and cathode stoichiometric oxygen are very important control parameters. The performance and lifespan of PEMFC stack are greatly dependent on the parameters. So, in order to improve the performance index, tight control of two parameters within a given range and reducing their fluctuation are indispensable. However, control-oriented models and control strategies are very weak junctures in the PEMFC development. A predictive control algorithm was presented based on their model established by input-output data and operating experiences. It adjusts the operating temperature to 80 ℃. At the same time, the optimized region of stoichiometric oxygen is kept between 1.8?2.2. Furthermore, the control algorithm adjusts the variants quickly to the destination value and makes the fluctuation of the variants the least. According to the test results, compared with traditional fuzzy and PID controllers, the designed controller shows much better performance.
引用
收藏
页码:722 / 725
页数:4
相关论文
共 50 条
  • [41] Control-oriented model of fuel processor for hydrogen generation in fuel cell applications
    Pukrushpan, J
    Stefanopoulou, A
    Varigonda, S
    Eborn, J
    Haugstetter, C
    CONTROL ENGINEERING PRACTICE, 2006, 14 (03) : 277 - 293
  • [42] Performance of a proton exchange membrane fuel cell stack
    Johnson, R
    Morgan, C
    Witmer, D
    Johnson, T
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2001, 26 (08) : 879 - 887
  • [43] Performance of a proton exchange membrane fuel cell stack
    Johnson, R.
    Morgan, C.
    Witmer, D.
    Johnson, T.
    International Journal of Non-Linear Mechanics, 2001, 36 (08) : 879 - 887
  • [44] Development of Control-Oriented Models for Model Predictive Control in Buildings
    Li, Pengfei
    O'Neill, Zheng D.
    Braun, James E.
    2013 ASHRAE ANNUAL CONFERENCE, 2013,
  • [45] Novel Model of Proton Exchange Membrane Fuel Cell with Predictive Control Using Hildreth Algorithm Based on Fractional-order Dynamic Model
    Chu Kaihui
    Qi Zhidong
    Qin Hao
    Shan Liang
    China Petroleum Processing & Petrochemical Technology, 2024, 26 (03) : 122 - 135
  • [46] Output voltage control of proton exchange membrane fuel cell based on fuzzy PID
    Qi, Zhi-Dong
    Peng, Fu-Ming
    Liu, Meng
    Zhang, Xu
    Liu, Shi-Jian
    Nanjing Li Gong Daxue Xuebao/Journal of Nanjing University of Science and Technology, 2012, 36 (03): : 432 - 436
  • [47] Fuzzy Logic based Control Strategies for Proton Exchange Membrane Fuel Cell System
    Mahali, Annada Prasad
    Gara, Uday Bhaskar Babu
    Mullapudi, Siva
    IFAC PAPERSONLINE, 2022, 55 (01): : 703 - 708
  • [48] Fuzzy Logic Based Constant Power Control of a Proton Exchange Membrane Fuel Cell
    Fan, Liping
    Liu, Yi
    PRZEGLAD ELEKTROTECHNICZNY, 2012, 88 (5B): : 72 - 75
  • [49] Dynamic thermal management of proton exchange membrane fuel cell vehicle system using the tube-based model predictive control
    Cao, Jishen
    Yin, Cong
    Wang, Renkang
    Li, Rui
    Liu, Rujie
    Tang, Hao
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2024, 70 : 493 - 509
  • [50] Control oriented data driven linear parameter varying model for proton exchange membrane fuel cell systems
    Deng, Zhihua
    Chen, Qihong
    Zhang, Liyan
    Zong, Yi
    Zhou, Keliang
    Fu, Zhichao
    APPLIED ENERGY, 2020, 277