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Autothermal reforming of gasoline for fuel cell applications: Controller design and analysis

机译:燃料电池用汽油的自热重整:控制器设计和分析

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摘要

In this work, we address the control system options available to an autothermal reforming (ATR) reactor. The targeted application is within an on-board fuel processor for a hydrogen-fed low-temperature fuel cell. The feedback controller employs air feed rate as the manipulated variable and a measurement of catalyst temperature as the control variable. Disturbances include significant fluctuations in the measured temperature as well as large throughput changes, owning to the on-board application. Our investigation includes an analysis of a simple feedback configuration as well as feed-forward control structure. It is concluded that the feedback only method is insufficient for the unique challenges associated with onboard operation, which include fast start-up and quick load changes. While the feed-forward configuration improves performance, we found a fair amount of sensitivity with respect to model mismatch. The general conclusion is that some form of advanced control will be needed to meet the stringent performance requirements of the on-board fuel processor application.
机译:在这项工作中,我们讨论了自动热重整(ATR)反应器可用的控制系统选项。目标应用是在氢燃料低温燃料电池的车载燃料处理器中。反馈控制器将空气进料速率用作操作变量,并将催化剂温度的测量值用作控制变量。干扰包括车载应用中所测温度的明显波动以及较大的吞吐量变化。我们的研究包括对简单反馈配置以及前馈控制结构的分析。结论是,仅反馈方法不足以解决与机载操作相关的独特挑战,其中包括快速启动和快速更改负载。尽管前馈配置提高了性能,但我们发现模型不匹配的敏感性很高。总的结论是,将需要某种形式的高级控制来满足车载燃料处理器应用的严格性能要求。

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