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首页> 外文期刊>Renewable Power Generation, IET >Algebraic observer-based output-feedback controller design for a PEM fuel cell air-supply subsystem
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Algebraic observer-based output-feedback controller design for a PEM fuel cell air-supply subsystem

机译:PEM燃料电池供气子系统的基于代数观察者的输出反馈控制器设计

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摘要

In this study, an algebraic-observer-based output-feedback controller is proposed for a proton exchange membrane fuel cell (PEMFC) air-supply subsystem, based on both algebraic differentiation and sliding-mode control approaches. The goal of the design is to regulate the oxygen excess ratio (OER) towards its optimal set point value in the PEMFC air-supply subsystem. Hence, an algebraic estimation approach is used to reconstruct the OER based on a robust differentiation method. The proposed observer is known for its finite-time convergence and low computational time compared to other observers presented in the literature. Then, a twisting controller is designed to control the OER by manipulating the compressor motor voltage. The parameters of the twisting controller have been calculated by means of an off-line tuning procedure. The performance of the proposed algebraic-observer-based output-feedback controller is analysed through simulations for different stack-current changes, for parameter uncertainties, and for noise rejection. Results show that the proposed approach properly estimates and regulates the OER in finite-time.
机译:在这项研究中,基于代数微分和滑模控制方法,针对质子交换膜燃料电池(PEMFC)供气子系统,提出了一种基于代数观测器的输出反馈控制器。该设计的目的是在PEMFC供气子系统中将氧气过量比(OER)调节到最佳设定点值。因此,基于鲁棒微分方法,使用代数估计方法来重建OER。与文献中提出的其他观察者相比,提出的观察者以其有限的时间收敛性和较低的计算时间而闻名。然后,设计一个扭曲控制器,通过控制压缩机电机电压来控制OER。扭曲控制器的参数已通过离线调整程序进行了计算。通过仿真,针对不同的堆电流变化,参数不确定性和噪声抑制,对提出的基于代数观测器的输出反馈控制器的性能进行了分析。结果表明,所提出的方法可以在有限的时间内正确地估计和调节OER。

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