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Comparison of models of fuel cells based on experimental data for the design of power electronics systems

机译:基于实验数据的燃料电池模型比较,用于电力电子系统设计

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摘要

Fuel cells have a key role in the potential provision of combined generation of heat and power. Sophisticated power management algorithms have been developed to reduce hydrogen consumption. An accurate analysis of the interaction between the fuel cell system and the front-end power converter is fundamental to achieving high performances. Accurate modelling of the entire system is required, especially the primary energy source, including the auxiliary components. Fuel cell modelling techniques have been presented extensively in the literature. Models are usually oriented to give technical insight concerning the fuel cell systems. The importance of fuel cell modelling in the design and control of front-end power converters seldom has been addressed, and this has led to highly complex model structures and the need to assume the values of several parameters that cannot be measured easily in a power electronics laboratory. Such models are not well suited for designing renewable energy systems. Hence, semi-empirical models oriented to the design of power systems are presented and compared. Both white-box and black-box modelling approaches are presented, and both models were tested on a 5-kW commercial fuel cell system provided by Nuvera. Both modelling approaches were validated comparing the simulation and experimental results.
机译:燃料电池在热电联产的潜在提供中起着关键作用。已经开发出先进的电源管理算法来减少氢气消耗。准确分析燃料电池系统与前端功率转换器之间的相互作用是获得高性能的基础。需要对整个系统进行准确的建模,尤其是主要能源,包括辅助组件。燃料电池建模技术已在文献中广泛介绍。模型通常旨在提供有关燃料电池系统的技术见解。很少讨论燃料电池建模在前端功率转换器的设计和控制中的重要性,这导致了非常复杂的模型结构,并且需要假设一些在电力电子设备中无法轻易测量的参数值实验室。这样的模型不太适合设计可再生能源系统。因此,提出并比较了针对电力系统设计的半经验模型。提出了白盒和黑盒建模方法,并且两种模型都在Nuvera提供的5kW商业燃料电池系统上进行了测试。通过比较仿真和实验结果,验证了这两种建模方法。

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