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Dynamic Modeling and Control of a Fuel Cell Hybrid Vehicle with Onboard Fuel Processor

机译:用船上燃料处理器的燃料电池混合动力车辆的动态建模与控制

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The transient behavior of a Fuel Processor System to produce Hydrogen from bio-ethanol with high performance, coupled with a Proton Exchange Membrane Fuel Cell is modeled. The Ethanol Processor is based on a previous steady state design, optimized to work with maximum efficiency around 10 kW of rated power. From the dynamic rigorous model, a linearized model is identified to apply a systematic procedure to synthesize the control structure. The Fuel Cell System is then hybridized with supercapacitors as auxiliary power source, to lower the overall consumption of hydrogen, hence of bio-ethanol too. The entire vehicle is tested using standard driving cycles, widely utilized in related literature and to measure pollutant emissions. The overall behavior reaches the expectations and is capable of fulfilling the requirements of urban and highway scenarios, and also suggests the possibility of resizing the components to improve fuel economy.
机译:燃料处理器系统的瞬态行为,以具有高性能的生物乙醇的氢,与质子交换膜燃料电池相连。乙醇处理器基于先前的稳态设计,优化,以最大效率约为10 KW的额定功率。从动态严格模型,识别出线性化模型以应用系统的过程来合成控制结构。然后将燃料电池系统与超级电容器杂交,作为辅助电源,以降低氢的总体消耗,因此也是生物乙醇。使用标准驱动循环测试整个车辆,广泛用于相关文献并测量污染物排放。整体行为达到了期望,能够满足城市和公路情景的要求,并建议调整组件大小以改善燃油经济性的可能性。

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