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Design of Adaptive Backstepping Sliding Mode-Based Proton Exchange Membrane Fuel Cell Hydrogen Circulation Pump Controller

机译:基于自适应Backstepping滑模的质子交换膜燃料电池氢循环泵控制器设计

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Proton exchange membrane fuel cell (PEMFC) has a compelling potential to solve the environment and energy issues. The hydrogen circulation pump, a main component of the PEMFC, its output mass flow rate need be regulated in time, which affects the hydrogen excess ratio and further influences the efficiency of PEMFC. A nonlinear model of hydrogen supply system is built and a linear state space model is simplified. An adaptive backstepping sliding mode (ABSM) controller is designed to control the output mass flow rate of the pump. To test the efficacy of the proposed ABSM controller used for the circulation pump, a vehicle driving cycle of WVUSUB is implemented to change the PEMFC current as the disturbance of the control system. The results indicate that the output well tracks the ideal output within 2% relative error, and the ABSM controller has a promising application on various operation conditions.
机译:质子交换膜燃料电池(PEMFC)具有解决环境和能源问题的巨大潜力。氢气循环泵是PEMFC的主要部件,其输出质量流量需要及时调节,这会影响氢气的过量比,进而影响PEMFC的效率。建立了供氢系统的非线性模型,简化了线性状态空间模型。自适应反步滑模(ABSM)控制器设计用于控制泵的输出质量流率。为了测试所提出的用于循环泵的ABSM控制器的功效,实施了WVUSUB的车辆行驶周期,以改变PEMFC电流作为控制系统的干扰。结果表明,输出能够在2%的相对误差内很好地跟踪理想输出,并且ABSM控制器在各种运行条件下都有着广阔的应用前景。

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