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Wiener Model and Extremum Seeking Control for a CO Preferential Oxidation Reactor with the CuO-CeO 2 catalyst

机译:具有CuO-CeO 2 催化剂的CO优先氧化反应器的Wiener模型和极值搜寻控制

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Hydrogen rich gas produced by hydrocarbon reforming contains CO up to several thousand ppm which acts as a poison for the proton exchange membrane fuel cells. Preferential oxidation (PROX) is one of the promising methods that reduce its concentration below 10ppm. The PROX reactor with the CuO-CeO2catalyst shows optimal reactor temperature and a control system that maintains the PROX reactor temperature at its optimal one under changing environments and catalyst deactivations. Experimental studies to obtain a dynamic model for the CO PROX reactor have been done and the Wiener-type nonlinear model is obtained. Then the extremum seeking control that can track the optimal temperature for the Wiener-type nonlinear system is applied and its performance is verified experimentally. The extremum seeking control is a non-parametric real-time optimization method and can be applied effectively to other CO PROX reactors with different operating conditions.
机译:由烃重整产生的富氢气体含有高达数千ppm的CO,其充当质子交换膜燃料电池的毒物。优先氧化(PROX)是将其浓度降低到10ppm以下的有前途的方法之一。具有CuO-CeO2催化剂的PROX反应器显示出最佳的反应器温度,并且在变化的环境和催化剂失活下,该控制系统可将PROX反应器的温度保持在最佳温度。已经进行实验研究以获得用于CO PROX反应器的动力学模型,并且获得了维纳型非线性模型。然后应用能够追踪维纳型非线性系统最优温度的极值搜索控制,并通过实验验证了其性能。极值搜寻控制是一种非参数实时优化方法,可以有效地应用于具有不同运行条件的其他CO PROX反应器。

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