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Flatness-based feedforward control of polymer electrolyte membrane fuel cell gas conditioning system

机译:基于平面度的高分子电解质膜燃料电池气体调节系统前馈控制

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Manufacturers of automotive applications rely on high-performance testing environments for the development of polymer electrolyte membrane fuel cell (PEMFC) technologies. The main component of a PEMFC testbed is the gas conditioning system, which controls the inlet gas temperature, stack pressure, relative humidity and mass flow of the gas at the inlet of the PEMFC stack. This paper presents a control concept for a highly dynamic PEMFC gas conditioning system. The main control challenge lies in the decoupling of the governing thermodynamic quantities. Therefore, the nonlinear control concept of exact input output linearisation with an extended PID control structure is applied. Constraints on the actuators are incorporated by formulating the resulting control law as an optimisation problem. The robustness with respect to parameter uncertainties for the model is shown by investigating the trajectory tracking error of the disturbed system. Simulation results show an overall good performance for the trajectory tracking and demonstrate the robustness of the model against parameter uncertainties. (C) 2016 Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:汽车应用的制造商依靠高性能测试环境来开发聚合物电解质膜燃料电池(PEMFC)技术。 PEMFC测试床的主要组件是气体调节系统,该系统控制进气温度,烟囱压力,相对湿度和PEMFC烟囱入口处气体的质量流量。本文提出了高动态PEMFC气体调节系统的控制概念。主要的控制挑战在于控制热力学量的去耦。因此,采用了具有扩展PID控制结构的精确输入输出线性化的非线性控制概念。通过将得出的控制律公式化为优化问题,可以合并执行器上的约束。通过研究受干扰系统的轨迹跟踪误差,可以显示出模型参数不确定性的鲁棒性。仿真结果显示了轨迹跟踪的总体良好性能,并证明了该模型针对参数不确定性的鲁棒性。 (C)2016由Elsevier Ltd代表Hydrogen Energy Publications LLC发布。

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