燃料电池仿真器的建模与控制

S. Sirisukprasert, T. Saengsuwan
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引用次数: 22

摘要

本文提出了一种燃料电池仿真器原型,用于燃料电池能源系统开发阶段替代实际燃料电池系统。这种新型燃料电池模拟器的功率级由一个电流源转换器(降压整流器)和一个dc- dc降压转换器组成。通过这两种电力电子电路和基于dsp的控制器的协作,所提出的燃料电池仿真器既能模拟燃料电池的V-I特性,又能提供高质量的输出电压和电流。本文主要对质子交换膜燃料电池和固体氧化物燃料电池这两种已知的燃料电池系统进行了模拟研究。所提出的燃料电池仿真器可以有效地完成激活、欧姆和浓缩三个操作区域。给出了分析、建模和控制策略。最后,对所设计的燃料电池仿真器的静态和动态性能进行了实验验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The modeling and control of fuel cell emulators
This paper proposes a prototype of fuel cell emulator used to replace a real fuel cell system during the development stage of a fuel-cell based energy source system. The power stage of this new fuel cell emulator consists of a current source converter (buck rectifier) and a dc-to-dc buck converter. With the collaboration of these two power electronics circuits and a DSPbased controller, the proposed fuel cell emulator provides both emulated V-I fuel cell characteristic and high-quality output voltage and current. This research mainly focuses on emulating the behavior of two well-known fuel cell systems: proton exchange membrane fuel cell and solid oxide fuel cells. The proposed fuel cell emulator can effectively perform in all three operation regions, i.e. activation, ohmic and concentration. Analysis, modeling and control strategy are presented. Finally, both static and dynamic performances of the proposed fuel cell emulator are experimentally verified.
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