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Black-Box Behavioral Modeling and Identification of DC–DC Converters With Input Current Control for Fuel Cell Power Conditioning

机译:具有输入电流控制的燃料电池功率调节DC-DC转换器的黑匣子行为建模和识别

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摘要

Fuel cells are a prime candidate for alternative power source of future on-board power distribution systems such as those for the more-electric-aircraft and electric vehicles. These systems are comprised of a large number of power converters, often provided by a variety of manufacturers. Modeling and simulation are powerful tools to evaluate the system-level behavior but, due to confidentiality of manufacturers, black-box behavioral models of the converters are required instead of the conventional ones. This paper proposes a black-box modeling and identification method of dc–dc converters with input current control for fuel-cell power conditioning. The model is simple, requires low computational cost for simulation, and the identification procedure is based on simple experiments. Moreover, the model does not represent the internal structure of the converter, so it can be provided by the manufacturer while protecting confidential data. The method is illustrated in detail and validated by making use of a commercial dc–dc converter specifically designed for fuel-cell power conditioning.
机译:燃料电池是未来机载配电系统(例如,用于更电动的飞机和电动车辆的那些系统)的替代电源的首选。这些系统由通常由各种制造商提供的大量功率转换器组成。建模和仿真是评估系统级行为的强大工具,但由于制造商的机密性,因此需要转换器的黑匣子行为模型,而不是常规模型。本文提出了具有输入电流控制的燃料电池功率调节DC-DC转换器的黑匣子建模和识别方法。该模型简单,仿真所需的计算成本较低,识别过程基于简单的实验。此外,该模型不代表转换器的内部结构,因此可以由制造商在保护机密数据的同时提供。对该方法进行了详细说明并通过使用专门为燃料电池功率调节设计的商用dc-dc转换器进行了验证。

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