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Adaptation of F-EIS for Online PEMFC Analysis

机译:适应F-EIS以进行在线PEMFC分析

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An adaptation of the fast impedance spectroscopy (F-EIS) allows integrating the impedance spectroscopy into fuel cell systems for online analysis. The cost intensive installation of frequency response analyzers for laboratory research can be replaced by a low cost F-EIS-hardware tailored for the specific reduced functional range in PEMFC systems. The focus lies on the adaptation of the F-EIS perturbation signal. Two parameters are of special interest -the amplitude and the frequency. One aim is to keep the perturbation input as small as possible to neglect the effect of system non-linearity and to avoid negative effects on the load. However, the biggest possible effect from the perturbation signal has to be achieved, to create significant cell responses which are less sensitive to noises and instabilities and will lead to reliable results. For the frequency the upper limit is defined by sample rate and the lower limit by the measurement time. For a fast online analysis the measurement period should be reduced and the sample rate increased as far as necessary to still retrieve the important information from the impedance data.
机译:快速阻抗谱(F-EIS)的改编允许将阻抗谱集成到燃料电池系统中以进行在线分析。用于实验室研究的频率响应分析仪的安装成本高昂,可以用针对PEMFC系统中特定的缩小功能范围而量身定制的低成本F-EIS硬件来代替。重点在于F-EIS扰动信号的自适应。两个参数特别重要-幅度和频率。一个目标是保持扰动输入尽可能小,以忽略系统非线性的影响并避免对负载产生负面影响。但是,必须从扰动信号中获得最大可能的影响,以创建对噪声和不稳定性较不敏感的显着细胞响应,从而获得可靠的结果。对于频率,上限由采样率定义,下限由测量时间定义。为了进行快速的在线分析,应尽可能减少测量周期,并增加采样率,以仍然从阻抗数据中检索重要信息。

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