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Fuel Cell Power Control Based on a Master-Slave Structure: A Proton Exchange Membrane Fuel Cell Case Study

机译:基于主从结构的燃料电池功率控制:质子交换膜燃料电池案例研究

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摘要

Fuel cells generally become promising candidates for the electrical power supply in automotive and stationary applications. The power control of the fuel cell is one of the essential problems. In this paper, a power control concept with a master-slave structure for fuel cell systems is suggested. Within that concept, a DC/DC converter, several slave controllers, and a master controller are combined to achieve the control objectives. The DC/DC converter conditions the power and transfers it from the fuel cell to the load. The task of the slave controller is to maintain the controlled variables at their set points. The master controller has to select the set points for the slave controllers and limits the fuel cell output power, if the requested power exceeds the maximum power, which can be instantaneously produced by the controlled fuel cell system. The proposed control concept is demonstrated by simulations of a proton exchange membrane (PEM) fuel cell system taken from the literature. For that purpose, different controllers are designed based on model-free methods. For the master controller design, two alternative options are discussed: high efficiency tracking and fast power tracking. As shown in the simulation results, high efficiency tracking leads to higher system efficiency, however, an additional energy buffer is required. In contrast, no energy buffer is needed for the option of fast power tracking. However, the system efficiency is lower. The presented control concept is meaningful for systems with dynamic load requirements and can be easily applied to different fuel cell systems due to the model-free design approach.
机译:燃料电池通常成为汽车和固定应用中电源的有前途的候选者。燃料电池的功率控制是基本问题之一。在本文中,提出了一种具有主从结构的燃料电池系统功率控制概念。在该概念内,将DC / DC转换器,几个从控制器和一个主控制器组合在一起以实现控制目标。 DC / DC转换器调节功率并将其从燃料电池传输到负载。从属控制器的任务是将受控变量保持在其设定点。如果请求的功率超过最大功率,则主控制器必须为从控制器选择设置点,并限制燃料电池的输出功率,该最大功率可以由受控燃料电池系统即时产生。通过对文献中质子交换膜(PEM)燃料电池系统的仿真,证明了提出的控制概念。为此,基于无模型方法设计了不同的控制器。对于主控制器设计,讨论了两个替代选项:高效跟踪和快速功率跟踪。如仿真结果所示,高效跟踪导致更高的系统效率,但是,需要额外的能量缓冲器。相反,快速功率跟踪选项不需要能量缓冲器。但是,系统效率较低。提出的控制概念对具有动态负载要求的系统有意义,并且由于采用了无模型设计方法,因此可以轻松地应用于不同的燃料电池系统。

著录项

  • 来源
    《Journal of Fuel Cell Science and Technology》 |2012年第4期|p.1-11|共11页
  • 作者单位

    College of Automotive Engineering, Tongji University, 201804, Shanghai, China;

    Max Planck Institute for Dynamics of Complex Technical Systems, 39106, Magdeburg, Germany;

    Max Planck Institute for Dynamics of Complex Technical Systems, 39106, Magdeburg, Germany Process Systems Engineering, Otto-von-Guericke University Magdeburg, 39106, Magdeburg, Germany College of Automotive Engineering, Tongji University, 201804, Shanghai, China Max Planck Institute for Dynamics of Complex Technical Systems, 39106, Magdeburg, Germany;

    Process Systems Engineering, Otto-von-Guericke University Magdeburg, 39106, Magdeburg, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    PEM fuel cell, power control, master-slave structure, model-free;

    机译:PEM燃料电池;功率控制;主从结构;无模型;

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