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Transient power characteristic measurement of a proton exchange membrane fuel cell generator

机译:质子交换膜燃料电池发生器的瞬时功率特性测量

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An experimental study on the transient power characteristics of a fuel cell generator has been conducted. The generator is hybridized by a proton exchange membrane (PEM) as the main power source and a lithium-ion battery as the secondary power source, power-conditioning module consisting of a main bidirectional converter and an auxiliary converter has been designed to manage the hybrid power of the generator that copes with fast dynamics of variable loads. Sensors embedded in the generator have measured the electrical properties dynamically. It was found that the present power-conditioning scheme has well controlled the power flow between the fuel cell stack and the battery by regulating the power flow from or to the battery. In addition, the thermal management system using pulse width modulation (PWM) schemes could limit the operation temperature of the fuel cell generator in a designed range. Furthermore, the dynamics of electrical efficiency of the generator are found to be parallel with those of the net system power. Finally, the stability and reliability of the fuel cell generator is proven by the rational dynamic behaviors of thermal and electrical properties for over 30-h demonstration.
机译:已经对燃料电池发电机的瞬时功率特性进行了实验研究。发电机由质子交换膜(PEM)作为主要电源,而锂离子电池作为辅助电源进行混合,设计了由主双向转换器和辅助转换器组成的功率调节模块来管理混合动力发电机的功率,可应对可变负载的快速动态变化。内置在发电机中的传感器已经动态测量了电性能。已经发现,当前的功率调节方案通过调节来自电池或到电池的功率流,已经很好地控制了燃料电池堆与电池之间的功率流。另外,使用脉冲宽度调制(PWM)方案的热管理系统可以将燃料电池发电机的工作温度限制在设计范围内。此外,发现发电机的电效率的动态与净系统功率的动态平行。最后,通过超过30小时的演示,热和电性能的合理动态行为证明了燃料电池发电机的稳定性和可靠性。

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