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Design of a mobile PEM power backup system through detailed dynamic and control analysis

机译:通过详细的动态和控制分析设计移动PEM电源备用系统

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In this paper we present a one dimensional dynamic model of a PEM fuel cell applied to the design of a mobile backup system for uninterruptable power units. The fuel cell is modeled using a finite difference approach where mass and energy balance equations are applied locally together with the pertinent equations of the electrochemical model yielding the profiles of any relevant thermodynamic and electrochemical cell variable. An accurate analysis of the membrane humidification is included based on state of the art models available in literature. In this system the fuel cell is fed by pure hydrogen taken from a lithium hydride hydrogen storage while ambient air is supplied to the cathode by an inverter-fed electric motor fan. A preliminary design of the main components is provided for a target operating time of 48 h. Dynamic simulations are then carried out applying to the fuel cell the actual electricity load of a computer file server that was experimentally measured by a power measurement device over a period of 0.5 h. Results of the simulations show that with an appropriate choice of the controllers parameters it is possible to maintain effective cell operation under different load variations keeping the key variables of the fuel cell within the desired set point targets.
机译:在本文中,我们提出了一种PEM燃料电池的一维动态模型,该模型可用于不间断动力装置的移动备用系统的设计。使用有限差分方法对燃料电池进行建模,其中将质量和能量平衡方程式与电化学模型的相关方程式一起局部应用,从而得出任何相关的热力学和电化学电池变量的曲线。根据文献中提供的最新模型,可以对膜的湿度进行准确的分析。在该系统中,燃料电池由从氢化锂储氢中提取的纯氢供料,而环境空气则由逆变器供电的电动风扇提供给阴极。提供了主要部件的初步设计,目标运行时间为48小时。然后将动态文件应用于燃料电池,将计算机文件服务器的实际电力负载应用到燃料电池中,该文件服务器由功率测量设备在0.5小时的时间内进行了实验测量。仿真结果表明,通过适当选择控制器参数,可以在不同负载变化下保持有效的电池运行,从而将燃料电池的关键变量保持在所需的设定点目标之内。

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