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Adaptive current distribution method for parallel-connected PEMFC generation system considering performance consistency

机译:考虑性能一致性的并联PEMFC发电系统自适应电流分配方法

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The proton exchange membrane fuel cell (PEMFC) stacks are not widely utilized in the sector of the transportation industry, due to their limited efficiency and durability. In order to apply FC stacks in high-power occasions, the FC stacks are usually connected in parallel to form a multi-stack FC system (MFCS). During the operation, since the current from the stacks changes dynamically with different operating parameters, they usually present different performance. In the MFCS, if the performance of one stack is unsatisfactory, operating the underperforming stack without corresponding protection measures may further degrade its performance and thus break down the system. In order to slow down the performance degradation of the FC stacks and keep the consistency of stacks' performance in MFCS, this paper has considered the effects of different stacks operating state and membrane area on the output current variations of stacks. And then an adaptive current distribution method realized by virtual droop technique considering the performance consistency of FC is proposed. Besides, this study builds a parallel-connected PEMFC generation system to verify the effectiveness of the proposed method. The validity of the proposed method has been demonstrated with experimental results. In addition, compared with the conventional control algorithm, the presented virtual droop control algorithm could get more satisfactory results. Such as improving the load voltage regulation and reducing the magnitude of the deviation between the actual output current and the reference current.
机译:质子交换膜燃料电池(PEMFC)堆由于其有限的效率和耐用性而未在运输行业中广泛使用。为了在高功率场合应用FC堆栈,通常将FC堆栈并联连接以形成多堆栈FC系统(MFCS)。在操作过程中,由于来自堆栈的电流随不同的操作参数而动态变化,因此它们通常表现出不同的性能。在MFCS中,如果单个堆栈的性能不能令人满意,则在操作不佳的堆栈时如果没有相应的保护措施,可能会进一步降低其性能,从而导致系统崩溃。为了减缓FC电池组的性能下降并保持MFCS中电池组性能的一致性,本文考虑了不同电池组的工作状态和膜面积对电池组输出电流变化的影响。在此基础上,提出一种考虑虚拟光纤性能一致性的虚拟下垂技术实现的自适应电流分配方法。此外,本研究建立了一个并行连接的PEMFC生成系统,以验证该方法的有效性。实验结果证明了该方法的有效性。另外,与传统的控制算法相比,本文提出的虚拟下垂控制算法可以获得更好的效果。例如改善负载电压调节率并减小实际输出电流与参考电流之间的偏差幅度。

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