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Review of System Integration and Control of Proton Exchange Membrane Fuel Cells

机译:对系统集成和控制质子交换膜燃料电池

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摘要

Proton exchange membrane fuel cells (PEMFCs) as power systems have been widely studied in various application fields because of advantages such as cleanness and high efficiency with great progress having been made in the past decades both technologically and fundamentally. Despite the many promising developments however, technical challenges remain in terms of performance and lifespans. This is because PEMFCs are complex systems composed of various components and factors such as material property, engineering design and operating conditions can interact with each other to affect lifespans and performance. To fully understand the coupling effects of different factors on the overall performance and durability of PEMFCs, this review will comprehensively present existing research based on four aspects, including fuel cell stacks, subsystems, system integration and control strategy optimizations. First, this review will outline fuel cell stacks with their multi-physics modeling and engineering design to provide an understanding of the operating mechanisms inside PEMFC reactors. Following this, the progress of research into the structure and function of each subsystem is summarized and integration schemes for different applications are briefly presented. Finally, various control strategies for individual PEMFC subsystems to optimize energy management and dynamic performance are discussed.
机译:质子交换膜燃料电池(pemfc)电力系统在各种被广泛研究应用领域,因为等优点清洁、高效和很大的进步在过去的几十年中取得了技术和根本。然而,许多有前途的发展技术在性能方面,挑战依然存在寿命。各种组件和组成的系统因素,如物料性质、工程设计和操作条件可以互动相互影响的寿命和性能。完全理解的耦合效应不同的因素对总体性能和质子交换膜燃料电池的耐用性,本文将综合目前现有的研究基础在四个方面,包括燃料电池堆栈,子系统,系统集成和控制策略优化。大纲multi-physics燃料电池堆栈建模和工程设计提供一个对内部运行机制的理解质子交换膜燃料电池反应堆。结构和功能的研究子系统是总结和集成方案简要介绍了为不同的应用程序。最后,各种控制策略单个质子交换膜燃料电池子系统优化能量管理和动态性能进行了讨论。

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