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Detection of fuel cell critical status by stack voltage analysis

机译:通过堆电压分析检测燃料电池的临界状态

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In comparison to state of the art fuel cell stack monitoring techniques, where for reliability and durability reasons either single cell or cell-block voltages are monitored separately, the new approach derives information about critical cell and stack status from the stack sum voltage only. The motivation for the development of such a technology is to establish a strongly simplified and low cost stack diagnosis unit. In comparison to the cell voltage monitoring (CVM) technology, where up to several hundreds voltage channels have to be measured separately or at least in pairs, the effort for wiring, contacting and instrumentation can be reduced dramatically. Critical cell operation occurs, if e.g. low air stoichiometry causes a sharp drop of voltage at a certain cell current. If in such case the current is superimposed by a small amplitude signal with specific frequency pattern, then the system response (i.e. stack voltage) will be distorted in the frequency domain. Particularly, this means that even if only one single cell is in a critical operation mode, it would cause distorted frequency fractions extractable from the entire stack voltage. Since this approach is related to the distortion of the frequency pattern only, noise and EMC issues are not significantly influencing the measuring quality. The instrumentation and processing effort is rather low and can be realized with a low cost DSP board. Measurement results for different critical stack operation modes, e.g. operation at low air or low hydrogen stoichiometry, with their correlation to the frequency distortion will be described and discussed.
机译:与现有技术的燃料电池堆监控技术相比,出于可靠性和耐用性的原因,单独监控单个电池或电池块电压,新方法仅从电池堆和电压中得出有关关键电池和电池堆状态的信息。开发这种技术的动机是建立一个大大简化和低成本的堆栈诊断单元。与必须分别或至少成对测量数百个电压通道的电池电压监控(CVM)技术相比,可以大大减少布线,接触和仪表的工作量。如果发生以下情况,则会发生严重的电池操作:空气化学计量比低会导致某个电池电流下电压急剧下降。如果在这种情况下电流被具有特定频率模式的小幅度信号叠加,则系统响应(即电池组电压)将在频域中失真。特别地,这意味着即使仅一个单元处于临界操作模式,也将导致可从整个电池堆电压提取的失真的频率分数。由于此方法仅与频率模式的失真有关,因此噪声和EMC问题不会显着影响测量质量。仪器和处理工作量很低,可以用低成本DSP板实现。不同关键堆运行模式的测量结果,例如将描述和讨论在低空气或低氢化学计量下的操作,以及它们与频率失真的关系。

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