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Analysis of DC/DC Converter Efficiency for Energy Storage System Based on Bidirectional Fuel Cells

机译:基于双向燃料电池的储能系统DC / DC变换器效率分析

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摘要

Renewable energy sources are fluctuating depending on the availability of the energy source. For this reason, energy storage is becoming more important and bidirectional fuel cells represent an attractive technology. Fuel cells require highcurrent low-voltage dc-dc or dc-ac converters as power interface to the grid. In power electronics, the converter efficiency is characterized at fixed operating voltage for various output power. This type of characterization is not suitable for fuel cells, since as the power from the fuel cell increases, the cell voltage decreases. This paper analyses how the fuel cell I-V characteristics influences the power electronics converter efficiency and their consequence on the overall system. A loaddependent efficiency curve is presented based on experimental results from a 6 kW dc-dc converter prototype including the most suitable control strategy which maximizes the dc-dc conversion efficiency.
机译:可再生能源根据能源的可用性而波动。因此,储能变得越来越重要,双向燃料电池代表了一种有吸引力的技术。燃料电池需要大电流低压DC-DC或DC-AC转换器作为电网的电源接口。在电力电子设备中,对于各种输出功率,转换器效率的特征在于固定的工作电压。这种类型的表征不适用于燃料电池,因为随着来自燃料电池的功率增加,电池电压会降低。本文分析了燃料电池的I-V特性如何影响电力电子转换器的效率及其对整个系统的影响。根据6 kW dc-dc转换器原型的实验结果,给出了与负载有关的效率曲线,该曲线包括最适合的控制策略,可最大程度地提高dc-dc转换效率。

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