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Observer-based Model Predictive Control Design for Air Supply System of Automotive PEM Fuel Cells

机译:基于观测器的汽车PEM燃料电池供气系统模型预测控制设计

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The air supply system control strategy is a significant challenge issue of PEM(Polymer Electrolyte Membrane) fuel cells. In this paper, an observer-based model predictive control scheme is proposed for oxygen excess ratio control to avoid the oxygen starvation without using physical sensor of oxygen excess ratio based on a nonlinear dynamic model. Firstly, a sliding mode PI observer is proposed to estimate the cathode pressure and oxygen excess ratio, and the convergence is also discussed by a constructed Lyapunov function. Then, the observer-based model predictive controller is designed for the oxygen excess ratio control. Finally, the simulation validation is demonstrated to validate the effectiveness of the proposed observer and the control scheme by a high fidelity model.
机译:空气供应系统控制策略是PEM(聚合物电解质膜)燃料电池面临的重大挑战。本文提出了一种基于观测器的模型预测控制方案,用于控制氧气过量比,避免了基于非线性动力学模型而无需使用氧气过量比物理传感器的氧气不足的情况。首先,提出了一种滑模PI观测器来估计阴极压力和氧气过量比,并通过构造的Lyapunov函数讨论了收敛性。然后,基于观察者的模型预测控制器被设计用于氧过量比控制。最后,通过高保真模型演示了仿真验证,以验证所提出的观察者和控制方案的有效性。

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