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A Gain-Scheduled LPV Control for Oxygen Stoichiometry Regulation in PEM Fuel Cell Systems

机译:PEM燃料电池系统中氧气化学计量调节的增益调度LPV控制。

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This paper addresses the linear parameter varying (LPV) control of a polymer electrolyte membrane fuel cell (PEMFC). To optimize efficiency, PEMFCs require reliable control systems ensuring stability and performance, as well as robustness to model uncertainties and external perturbations. On the other hand, PEMFCs present a highly nonlinear behavior that demands nonlinear and/or adaptive control strategies to achieve high performance in the entire operating range. Here, an LPV gain scheduled control is proposed. The control is based on a piecewise affine LPV representation of the PEMFC, a model that can be available in practice. To deal with the saturation of the control action, an LPV antiwindup compensation is also proposed. The complete control strategy is applied to several experimental practical situations in a laboratory fuel cell system to evaluate its performance and the reliability of the proposed algorithms.
机译:本文介绍了聚合物电解质膜燃料电池(PEMFC)的线性参数变化(LPV)控制。为了优化效率,PEMFC需要可靠的控制系统,以确保稳定性和性能以及对不确定性和外部扰动建模的鲁棒性。另一方面,PEMFC具有高度非线性的特性,需要非线性和/或自适应控制策略才能在整个工作范围内实现高性能。这里,提出了LPV增益调度控制。该控件基于PEMFC的分段仿射LPV表示,该模型可以在实践中使用。为了应对控制动作的饱和,还提出了LPV抗饱和补偿。完整的控制策略应用于实验室燃料电池系统中的几种实验实际情况,以评估其性能和所提出算法的可靠性。

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