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Fuel cell hybrid electric vehicles: A review on power conditioning units and topologies

机译:燃料电池混合动力汽车:功率调节单元和拓扑的评论

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摘要

Fuel cell (FC) application in vehicular technology has gained much popularity since the past few years. Typically, fuel Cell Hybrid Electric Vehicle (FCHEV) consists of fuel cell, battery and/or ultracapacitor (UC) as the power sources. The power converter is integrated to the power sources to form the hybrid FC system. This helps to compensate the drawback of individual power sources. Apart from the technical efficiency of power sources itself, the performance of an FCHEV is governed by the efficiency of power electronics and associated controller. In this paper, a state-of-the-art of vehicle classification is reviewed, in which the focus is placed on the deployment of fuel cell, battery, ultracapacitor and flywheel. The configurations used in FCHEV, followed by the updated power converter topologies, are also discussed. The topologies are categorized and discussed according to the power stages and control techniques used in the configurations. Then, multiple stages conversion and single stage topologies are described chronologically. The advantages and disadvantages of each topology, safety standards, current situation and environmental impact of FCHEV are also discussed. In addition, the current development of FCHEV, challenges and future prospects are also elaborated. The rapid growth of FC based research and technology has paved great prospects for FCHEVs in the near future, with the prediction of the competitive cost of hydrogen as compared to gasoline.
机译:自从过去几年以来,燃料电池(FC)在车辆技术中的应用已广受欢迎。通常,燃料电池混合动力电动汽车(FCHEV)由燃料电池,电池和/或超级电容器(UC)作为动力源。功率转换器集成到电源中,以形成混合FC系统。这有助于补偿单个电源的缺点。除了电源本身的技术效率外,FCHEV的性能还取决于电力电子设备和相关控制器的效率。在本文中,对最新的车辆分类进行了回顾,其中重点放在了燃料电池,电池,超级电容器和飞轮的部署上。还讨论了FCHEV中使用的配置,以及更新的电源转换器拓扑。根据配置中使用的功率级和控制技术对拓扑进行分类和讨论。然后,按时间顺序描述了多级转换和单级拓扑。还讨论了FCHEV的每种拓扑的优缺点,安全标准,现状和环境影响。此外,还阐述了FCHEV的当前发展,挑战和未来前景。基于燃料的燃料电池的研究和技术的快速增长,为氢燃料电池汽车在不久的将来铺就了广阔的前景,并预测氢与汽油相比具有竞争力的成本。

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