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A Multiphysic Dynamic 1-D Model of a Proton-Exchange-Membrane Fuel-Cell Stack for Real-Time Simulation

机译:质子交换膜燃料电池堆多物理场动态一维模型的实时仿真

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摘要

This paper presents cell-layer-scale multidomain dynamic 1-D proton-exchange-membrane fuel-cell (PEMFC) stack model using VHDL-AMS modeling language. The model covers three main fuel-cell energy domains: electrical, fluidic, and thermal. The performance and advantages of the VHDL-AMS language are shown in the first part. Then, by means of the “top-down” modeling approach, the electrical-, fluidic-, and thermal-domain models of the PEMFC stack are addressed in three separate parts. Simulation results are then compared with a Ballard 1.2-kW NEXA fuel-cell system and show a great agreement with experimental data. This complex multidomain VHDL-AMS stack model, containing more than 25 000 state variables and only few empirical coefficients (four parameters identified on the polarization curve), can be used for fuel-cell system components design and also for real-time applications. Real-time simulation is a key issue in many applications such as system control and hardware-in-the-loop applications. Moreover, this fuel-cell stack model is suitable and can be parameterized for all kinds of PEMFC including water-cooled and metal bipolar plates stacks: Only the cooling fluid and materials properties have to be changed.
机译:本文提出了使用VHDL-AMS建模语言的细胞层级多域动态一维质子交换膜燃料电池(PEMFC)堆叠模型。该模型涵盖了三个主要的燃料电池能量域:电,流体和热能。第一部分显示了VHDL-AMS语言的性能和优势。然后,通过“自顶向下”建模方法,将PEMFC堆栈的电,流体和热域模型分为三个独立的部分。然后,将仿真结果与巴拉德1.2 kW NEXA燃料电池系统进行了比较,并与实验数据高度吻合。这种复杂的多域VHDL-AMS堆栈模型包含25 000个以上的状态变量,并且只有很少的经验系数(在极化曲线上标识了四个参数),可用于燃料电池系统组件设计以及实时应用。实时仿真是许多应用程序中的关键问题,例如系统控制和硬件在环应用程序。此外,这种燃料电池堆模型非常适合,并且可以为包括水冷和金属双极板堆在内的所有PEMFC进行参数设置:仅需更改冷却液和材料特性。

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