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Power Control for Efficient Operation of a PEM Fuel Cell System by Nonlinear Model Predictive Control

机译:非线性模型预测控制的PEM燃料电池系统有效操作的功率控制

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Efficiency of polymer electrolyte membrane (PEM) fuel cells depends directly on anode and cathode gas pressures, and stack temperature. For an efficient chemical reaction and a safe operation for both stationary and dynamic loads all values must fall within specific ranges. This paper deals with real-time nonlinear model predictive control (NMPC) of electrical power for a PEM fuel cell system. The NMPC is split into three nonlinear optimization problems to calculate the optimal stack current and the supply of anode and cathode with hydrogen and oxygen. For real-time application the predictive control algorithm is matched to the sampling time of the system. This NMPC handles all kinds of dynamic load changes, while maximizing power efficiency without a steady state error. Modeling of relevant anode and cathode site fuel cell peripherals is shown. Experimental results on a test bench with a 4.4kW PEM fuel cell are presented.
机译:聚合物电解质膜(PEM)燃料电池的效率直接取决于阳极和阴极气体,以及堆叠温度。对于有效的化学反应和静止和动态载荷的安全操作,所有值必须落在特定范围内。本文对PEM燃料电池系统的电力实时非线性模型预测控制(NMPC)讨论。 NMPC分为三个非线性优化问题,以计算具有氢气和氧气的最佳堆叠电流和阳极和阴极的供应。对于实时应用,预测控制算法与系统的采样时间匹配。该NMPC处理各种动态负载变化,同时在没有稳态错误的情况下最大化功率效率。示出了相关阳极和阴极位点燃料电池外围设备的建模。提出了4.4kW PEM燃料电池试验台上的实验结果。

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