大功率多堆燃料电池系统的进展与挑战:架构与能源管理

Yuqi Qiu , Tao Zeng , Caizhi Zhang , Gucheng Wang , Yaxiong Wang , Zhiguang Hu , Meng Yan , Zhongbao Wei
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引用次数: 2

摘要

随着燃料电池的发展,用于大功率应用的多堆燃料电池系统以其高效、耐用、可靠、无污染等明显优势显示出巨大的发展潜力。因此,对MFCS的研究现状进行了总结和分析,以推进其研究。首先,介绍了MFCS在高功率场景中的应用,特别是在交通应用中。然后,为了进一步研究MFCS,回顾了MFCS,包括氢气和空气子系统、热力和水子系统、多堆结构以及预测和健康监测。值得注意的是,与以前的研究相比,MFCS很少研究预后和健康监测。此外,MFCS的效率和耐用性不仅与应用领域和设计原则有关,还与能源管理策略有关。原因是EMS对于多堆燃料电池系统的寿命、成本和效率至关重要。最后,提出了MFCS的挑战和发展潜力,为未来的研究提供了见解和指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Progress and challenges in multi-stack fuel cell system for high power applications: Architecture and energy management

Progress and challenges in multi-stack fuel cell system for high power applications: Architecture and energy management

With the development of fuel cells, multi-stack fuel cell system (MFCS) for high power application has shown tremendous development potential owing to their obvious advantages including high efficiency, durability, reliability, and pollution-free. Accordingly, the state-of-the-art of MFCS is summarized and analyzed to advance its research. Firstly, the MFCS applications are presented in high-power scenarios, especially in transportation applications. Then, to further investigate the MFCS, MFCS including hydrogen and air subsystem, thermal and water subsystem, multi-stack architecture, and prognostics and health monitoring are reviewed. It is noted that prognostics and health monitoring are investigated rarely in MFCS compared with previous research. In addition, the efficiency and durability of MFCS are not only related to the application field and design principle but also the energy management strategy (EMS). The reason is that the EMS is crucial for lifespan, cost, and efficiency in the multi-stack fuel cell system. Finally, the challenge and development potential of MFCS is proposed to provide insights and guidelines for future research.

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