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Control of PEMFC Air-Feed System Using Lyapunov-Based Robust and Adaptive Higher Order Sliding Mode Control

机译:基于Lyapunov的鲁棒自适应高阶滑模控制控制PEMFC空气进给系统

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摘要

In this brief, we present Lyapunov-based robust and adaptive higher order sliding mode (HOSM) controllers for the air-feed system of polymer electrolyte membrane fuel cells, which is a nonlinear single-input, single-output system with bounded uncertainty. The system consists of a motorized compressor, which is driven at its optimal point in order to minimize the internal energy consumption of the system. This brief provides an experimental demonstration of the applicability of the recently developed fixed-gain robust controller and adaptive controller for this problem. Third-order controllers are developed in order to obtain a continuous profile for the input current of the compressor motor. In this regard, a complete adaptive arbitrary HOSM control has been presented for the first time, with Lyapunov-based proof. A performance comparison between the two controllers is presented in the end.
机译:在本文中,我们介绍了基于Lyapunov的鲁棒和自适应高阶滑模(HOSM)控制器,用于聚合物电解质膜燃料电池的进气系统,该系统是具有不确定性的非线性单输入单输出系统。该系统由一个电动压缩机组成,该压缩机在最佳位置被驱动,以最大程度地减少系统的内部能耗。本文简要介绍了最近开发的固定增益鲁棒控制器和自适应控制器针对此问题的适用性。开发三阶控制器是为了获得压缩机电机输入电流的连续曲线。在这方面,首次提出了完整的自适应任意HOSM控制,并具有基于Lyapunov的证明。最后介绍了两个控制器之间的性能比较。

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