Variable DC Approach in Fuel cell And Battery Powered Marine Power Systems: Control of The Fuel Cell Power Converter

Arber Haxhiu, J. Kyyrä, Ricky Chan, S. Kanerva
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Abstract

Previously, the Variable DC approach concept was proposed for operation of hybrid fuel cell and battery powered marine vessels. The concept was shown to provide significant efficiency improvement, and consequently improved hydrogen fuel savings. However, although the general concept and the control of battery DC/DC converter has been detailly described in previous works, the operation of fuel cell DC/DC converter in different Variable DC approach control modes has not been presented. This paper proposes a fuel cell DC/DC converter control system specifically designed for operation in the three Variable DC approach control modes. The functionality of the proposed fuel cell DC/DC converter and the Variable DC approach in general is verified using a hardware-in-loop test setup consisting of virtual power stage models and real converter controllers. The system is shown to function well in both normal operating conditions and various fault conditions.
燃料电池和电池驱动船舶动力系统的变直流方法:燃料电池电源变换器的控制
在此之前,针对混合燃料电池和电池动力船舶的运行,提出了可变直流方法的概念。该概念被证明提供了显著的效率提高,从而提高了氢燃料的节省。然而,尽管在以往的工作中已经详细描述了电池DC/DC变换器的一般概念和控制,但尚未介绍燃料电池DC/DC变换器在不同可变直流进近控制模式下的运行情况。本文提出了一种燃料电池DC/DC变换器控制系统,专门设计用于三种可变直流接近控制模式。采用由虚拟功率级模型和真实变换器控制器组成的硬件在环测试装置,验证了所提出的燃料电池DC/DC变换器和可变DC方法的功能。该系统在正常工况和各种故障工况下均能良好运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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