李奇, 杨文钰, 尹良震, 冯嘉. 基于最大净功率的PEMFC系统过氧比分层控制[J]. 中国电机工程学报, 2021, 41(8): 2791-2802. DOI: 10.13334/j.0258-8013.pcsee.201678
引用本文: 李奇, 杨文钰, 尹良震, 冯嘉. 基于最大净功率的PEMFC系统过氧比分层控制[J]. 中国电机工程学报, 2021, 41(8): 2791-2802. DOI: 10.13334/j.0258-8013.pcsee.201678
LI Qi, YANG Wenyu, YIN Liangzhen, FENG Jia. Oxygen Excess Ratio Hierarchical Control for Maximum Net Power of PEMFC System[J]. Proceedings of the CSEE, 2021, 41(8): 2791-2802. DOI: 10.13334/j.0258-8013.pcsee.201678
Citation: LI Qi, YANG Wenyu, YIN Liangzhen, FENG Jia. Oxygen Excess Ratio Hierarchical Control for Maximum Net Power of PEMFC System[J]. Proceedings of the CSEE, 2021, 41(8): 2791-2802. DOI: 10.13334/j.0258-8013.pcsee.201678

基于最大净功率的PEMFC系统过氧比分层控制

Oxygen Excess Ratio Hierarchical Control for Maximum Net Power of PEMFC System

  • 摘要: 水冷型质子交换膜燃料电池(proton exchange membrane fuel cell,PEMFC)系统净输出功率与过氧比(oxygen excess ratio,OER)之间存在非线性、强耦合性的特点,因此,该文提出过氧比分层控制方法,用于PEMFC系统过氧比的寻优和控制。首先,基于离线+在线的过氧比寻优算法作为PEMFC最大净功率过氧比控制的上层控制,基于超螺旋滑模控制算法的反馈控制作为PEMFC最大净功率过氧比控制的下层控制,用以代替传统的PID反馈控制。利用李雅普诺夫函数,证明滑模控制作用下闭环系统的稳定性。搭建RT-LAB实时仿真平台,开展PEMFC系统实时仿真。结果表明,所提出的控制方法能够根据PEMFC系统净功率的实时变化而自动进行过氧比寻优控制,并在负载电流动态变化的情况下,满足净功率最大的性能指标要求,提高系统的运行效率。

     

    Abstract: The net output power of the proton exchange membrane fuel cell (PEMFC) system and the oxygen excess ratio (OER) have the characteristics of non-linearity and strong coupling. Therefore, the oxygen excess ratio hierarchical control method was proposed in this paper. The method was used to optimize and control the oxygen excess ratio of PEMFC system. The upper control was based on the offline+online oxygen excess ratio optimization algorithm. Feedback control based on super-twisting algorithm was used as the lower control. The super-twisting algorithm was used to replace the traditional PID feedback control. The Lyapunov function was used to prove the stability of closed loop system under sliding mode control. RT-LAB real-time simulation platform was built to carry out real-time simulation of PEMFC system. According to the real-time change of the net power of the PEMFC system, the results show that the proposed control method can automatically perform optimal control of the oxygen excess ratio. In the case of dynamic changes of the load current, the method meets the performance index requirements of the maximum net power and improves the efficiency of the system.

     

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