首页> 外文会议>Applied Power Electronics Conference and Exposition (APEC), 2010 >Development of the novel control algorithm for the small proton exchange membrane fuel cell stack without external humidification
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Development of the novel control algorithm for the small proton exchange membrane fuel cell stack without external humidification

机译:无外部加湿的小型质子交换膜燃料电池堆新型控制算法的开发

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Small PEM (proton exchange membrane) fuel cell systems do not require humidification and have great commercialization possibilities. However, methods for controlling small PEM fuel cell stacks have not been clearly established. In this paper, a control method for small PEM fuel cell systems using a dual closed loop with a static feed-forward structure is defined and realized using a microcontroller. The fundamental elements that need to be controlled in fuel cell systems include the supply of air and hydrogen, water management inside the stack, and heat management of the stack. For small PEM fuel cell stacks operated without a separate humidifier, fans are essential for air supply, heat management, and water management of the stack. A purge valve discharges surplus water from the stack. The proposed method controls the fan using a dual closed loop with a static feed-forward structure, thereby improving system efficiency and operation stability. The validity of the proposed method is confirmed by experiments using a 150-W PEM fuel cell stack. We expect the proposed algorithm to be widely used for controlling small PEM fuel cell stacks.
机译:小型PEM(质子交换膜)燃料电池系统不需要加湿,并且具有很大的商业化可能性。然而,尚未清楚地建立用于控制小的PEM燃料电池堆的方法。在本文中,定义并使用微控制器实现了具有静态前馈结构的双闭环的小型PEM燃料电池系统的控制方法。燃料电池系统中需要控制的基本元素包括空气和氢气的供应,电池组内部的水管理以及电池组的热量管理。对于没有单独加湿器运行的小型PEM燃料电池堆,风扇对于电池组的空气供应,热量管理和水管理至关重要。放气阀从烟囱中排出多余的水。所提出的方法使用具有静态前馈结构的双闭环来控制风扇,从而提高了系统效率和运行稳定性。通过使用150 W PEM燃料电池堆进行的实验证实了所提出方法的有效性。我们期望所提出的算法将被广泛用于控制小型PEM燃料电池堆。

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