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首页> 外文期刊>Energy Conversion, IEEE Transactions on >Quasi-Maximum Efficiency Point Tracking for Direct Methanol Fuel Cell in DMFC/Supercapacitor Hybrid Energy System
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Quasi-Maximum Efficiency Point Tracking for Direct Methanol Fuel Cell in DMFC/Supercapacitor Hybrid Energy System

机译:DMFC /超级电容器混合能源系统中直接甲醇燃料电池的准最大效率点跟踪

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摘要

Direct methanol fuel cells (DMFC) have been widely researched for applications in portable electronics due to their use of liquid fuel for easy storage and transportation compared to gaseous hydrogen. However, DMFC’s performance is strongly affected by methanol crossover that significantly degrades the energy efficiency at low output power, and is characterized by an increasing efficiency at increasing output power. The maximum efficiency point (MEP) is inherently difficult to track due to the commonly unknown methanol crossover rate, but since it is experimentally found to be located very close to the maximum power point (MPP), it is suggested that the MPP can be practically viewed as the quasi-MEP and an alternative tracking approach based on the MPP is proposed for the purpose of MEP tracking. In this paper, a fuel-cell-oriented MPP tracking algorithm based on resistance matching is developed, implemented, and tested in the context of a DMFC/supercapacitor hybrid energy system. To account for the generally slow fuel cell dynamics, the DMFC is constantly tracked at the MPP, while any surplus or deficit power is absorbed or delivered by the supercapacitor bank. The detailed formulation of the algorithm and the power flow design and realization are also discussed.
机译:直接甲醇燃料电池(DMFC)因其使用液态燃料比起气态氢更易于存储和运输而在便携式电子产品中进行了广泛的研究。但是,DMFC的性能受到甲醇交换的强烈影响,甲醇交换会严重降低低输出功率时的能效,并且其特征是输出功率增加时效率会提高。由于通常不知道的甲醇交换速率,因此最大效率点(MEP)本质上难以跟踪,但是由于实验发现它位于非常接近最大功率点(MPP)的位置,因此建议该MPP实际上可以被认为是准MEP的,出于MEP跟踪的目的,提出了一种基于MPP的替代跟踪方法。本文在DMFC /超级电容器混合能源系统的背景下,开发,实现和测试了基于电阻匹配的面向燃料电池的MPP跟踪算法。为了解决通常缓慢的燃料电池动力学问题,经常在MPP上跟踪DMFC,而任何多余或不足的电量都由超级电容器组吸收或输送。还讨论了算法的详细表述以及潮流设计和实现。

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