李奇, 李朔, 尹良震, 李蕊睿, 游志宇, 陈维荣. 基于扩张状态观测器的PEMFC发电系统串级滑模控制方法[J]. 中国电机工程学报, 2022, 42(4): 1470-1480. DOI: 10.13334/j.0258-8013.pcsee.210231
引用本文: 李奇, 李朔, 尹良震, 李蕊睿, 游志宇, 陈维荣. 基于扩张状态观测器的PEMFC发电系统串级滑模控制方法[J]. 中国电机工程学报, 2022, 42(4): 1470-1480. DOI: 10.13334/j.0258-8013.pcsee.210231
LI Qi, LI Shuo, YIN Liangzhen, LI Ruirui, YOU Zhiyu, CHEN Weirong. Cascade Sliding Mode Control Strategy for PEMFC Power Generation System Based on Extended State Observer[J]. Proceedings of the CSEE, 2022, 42(4): 1470-1480. DOI: 10.13334/j.0258-8013.pcsee.210231
Citation: LI Qi, LI Shuo, YIN Liangzhen, LI Ruirui, YOU Zhiyu, CHEN Weirong. Cascade Sliding Mode Control Strategy for PEMFC Power Generation System Based on Extended State Observer[J]. Proceedings of the CSEE, 2022, 42(4): 1470-1480. DOI: 10.13334/j.0258-8013.pcsee.210231

基于扩张状态观测器的PEMFC发电系统串级滑模控制方法

Cascade Sliding Mode Control Strategy for PEMFC Power Generation System Based on Extended State Observer

  • 摘要: 质子交换膜燃料电池(proton exchange membrane fuel cell,PEMFC)发电系统过氧比(oxygen excess ratio,OER)控制过程中存在强非线性、不确定性以及外部干扰,对系统的稳定高效运行提出挑战。提出一种基于扩张状态观测器(extended state observer,ESO)的串级滑模控制(cascade sliding mode control,CSMC)方法。该控制方法采用双环控制策略,控制内环为基于ESO的等速趋近律滑模算法,其中ESO用于实现系统总扰动的实时观测与反馈补偿;外环为在一定系统边界下快速收敛的Super-twisting滑模算法。最后,在RT-LAB半实物平台上,考虑扰动及参数摄动,对所提出的CSMC方法进行对比实验。实验结果表明,所提出的控制方法不仅具有更快的响应速度及更小超调量,而且能够更好地抑制外部扰动及内部不确定性的影响,表现出更强的抗扰能力和鲁棒性。

     

    Abstract: Proton exchange membrane fuel cell (PEMFC) power generation system has strong non-linearity, uncertainty and external interference in the oxygen excess ratio (OER) control process, which proposes the stable and efficient operation of the system challenge. Therefore, this paper proposeds a cascade sliding mode control (CSMC) method based on extended state observer (ESO). The control method adopteds a dual-loop control strategy. The control inner loop wais a constant velocity approaching law sliding mode algorithm based on ESO, where ESO wais used to realize the real-time observation and feedback compensation of the total disturbance of the system; . The outer loop wais a Super-twisting sliding mode algorithm that quickly converges under a certain system boundary. Finally, on the RT-LAB semi-physical platform, considering the disturbance and parameter perturbation, the proposed CSMC method wais compared and tested. The experimental results show that the proposed control method not only has faster response speed and smaller overshoot, but also can better suppress the influence of external disturbance and internal uncertainty, showing stronger anti-disturbance ability and robustness.

     

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