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Design, Construction, and Control of a Stand-Alone Energy-Conditioning System for PEM-Type Fuel Cells

机译:PEM型燃料电池独立能量调节系统的设计,构建和控制

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This paper presents the development of an energy-conditioning system for a proton exchange membrane (PEM) type fuel cell (FC). The developed system provides $230$ V ac rms at $50$ Hz, with a nominal output power of $1$ kVA, and is able to handle sporadic high-power demands up to $5$ kVA. An auxiliary power unit (APU), using a bank of supercapacitors as energy-storing device, provides this extra power during a certain amount of time. The output current ripple and step response constraints of the FC unit are considered in the design. A frequency-decoupling scheme is used, in which the FC provides only the low-frequency requirements, while the fast/high-frequency demands are supplied by the APU. A detailed description is given for its different constructive modules, their control design, and implementation.
机译:本文介绍了质子交换膜(PEM)型燃料电池(FC)的能量调节系统的开发。开发的系统在$ 50 $ Hz时提供$ 230 $ V ac rms,标称输出功率为$ 1 $ kVA,并且能够处理高达$ 5 $ kVA的零星大功率需求。使用一组超级电容器作为能量存储设备的辅助电源单元(APU)在一定时间内会提供此额外的电源。设计中考虑了FC单元的输出电流纹波和阶跃响应约束。使用了一种频率解耦方案,其中FC仅提供低频要求,而快速/高频要求由APU提供。详细介绍了其不同的构造模块,其控制设计和实现。

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