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A strategy of estimating fuel concentration in a direct liquid-feed fuel cell system

机译:估计直接液体进料燃料电池系统中燃料浓度的策略

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Fuel control is one of the most pressing topics to achieve a self-sustainable direct liquid-feed fuel cell system, such as a direct methanol fuel cell (DMFC), and enhance its overall efficiency. In a DMFC system, sensing the methanol concentration generally serves as the basis of the fuel control strategies. This paper proposes a three-dimensional measurement space and constant concentration surfaces (CCS) to develop an algorithm of estimating fuel concentration in a liquid-feed system, which embraces the following merits: (1) it measures only three quantities or indices that correlate with the fuel concentration. The indices can be chosen as current, voltage, temperature, or other quantities that are easily acquired in an operating fuel cell system. The estimation can be accomplished without interrupting the operation of the system, (2) it estimates the fuel concentration in a three-dimensional measurement space; hence it is suitable for situations when one or more operating conditions are varying, (3) it can be performed as a sensor-less approach that requires no additional methanol sensors, thus consuming the less system power, and (4) it is particularly suitable for small and hand-held applications.
机译:燃料控制是实现可自我持续的直接供液燃料电池系统(例如直接甲醇燃料电池(DMFC))并提高其整体效率的最紧迫的主题之一。在DMFC系统中,感测甲醇浓度通常用作燃料控制策略的基础。本文提出了一种三维测量空间和恒定浓度表面(CCS),以开发一种估计液体进料系统中燃料浓度的算法,该算法具有以下优点:(1)它仅测量与之相关的三个量或指数燃料浓度。可以选择指数作为电流,电压,温度或在运行中的燃料电池系统中容易获得的其他数量。可以在不中断系统运行的情况下完成估算,(2)估算三维测量空间中的燃料浓度;因此,它适用于一个或多个运行条件变化的情况;(3)可以作为无传感器的方法执行,不需要额外的甲醇传感器,从而消耗较少的系统功率;(4)特别适合适用于小型和手持式应用。

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