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Temperature model and predictive control for fuel cells in switcher locomotive

机译:切换机车燃料电池温度模型及预测控制。

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The stack temperature plays a major role in ensuring highly reliable and efficient operations of the fuel cell system, and it directly affects the rate of chemical reactions and transport of water and reactants. In the fuel cell system for switcher locomotive, the thermal circuit consists of the stack, a bypass valve, a radiator with a fan, a coolant pump, and connecting pipes. In this paper, the thermal circuit was modeled. Model predictive control for the thermal circuit was employed in the design. The control objectives aim at satisfying the coolant temperature at the entry of the stack between 60-63°C, the temperature difference less 10 °C. and maximum efficiency. The dynamics and performance of the designed controllers were assessed and analyzed by simulations. The results demonstrate that the proposed control strategy cannot only accurately track the temperature reference over the all range of operating conditions but also reduce the parasitic power dissipated for the operation of the fan and coolant pump.
机译:堆温度在确保燃料电池系统的高度可靠和高效运行中起着重要作用,它直接影响化学反应的速度以及水和反应物的传输。在用于切换机车的燃料电池系统中,热回路由烟囱,旁通阀,带风扇的散热器,冷却剂泵和连接管组成。在本文中,对热回路进行了建模。在设计中采用了热回路的模型预测控制。控制目标旨在使电池组入口处的冷却液温度在60-63°C之间,温度差小于10°C。和最高的效率。通过仿真评估和分析了所设计控制器的动态和性能。结果表明,所提出的控制策略不仅可以精确地跟踪所有运行条件范围内的温度参考值,而且还可以降低风扇和冷却剂泵的运行所消耗的寄生功率。

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