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Adaptive Second-Order Sliding Mode Observer-Based Fault Reconstruction for PEM Fuel Cell Air-Feed System

机译:基于自适应二阶滑模观测器的PEM燃料电池供气系统故障重构

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摘要

This paper presents an observer-based fault reconstruction method for PEM fuel cells. This method extends the results of a class of nonlinear uncertain systems with Lipschitz nonlinearities. An adaptive-gain second-order sliding mode (SOSM) observer is developed for observing the system states, where the adaptive law estimates the uncertain parameters. The inherent equivalent output error injection feature of SOSM algorithm is then used to reconstruct the fault signal. The performance of the proposed observer is validated through a hardware-in-loop emulator. The experimental results illustrate the feasibility and effectiveness of the proposed approach for application to fuel cell air-feed systems.
机译:本文提出了一种基于观测器的PEM燃料电池故障重构方法。该方法扩展了具有Lipschitz非线性的一类非线性不确定系统的结果。自适应增益二阶滑模(SOSM)观察器被开发用于观察系统状态,其中自适应定律估计不确定参数。然后使用SOSM算法固有的等效输出误差注入功能来重建故障信号。通过硬件在环仿真器验证了提出的观察者的性能。实验结果说明了该方法应用于燃料电池供气系统的可行性和有效性。

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