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首页> 外文期刊>International journal of hydrogen energy >Experimental tests of an air-cooling hydrogen fuel cell hybrid electric scooter
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Experimental tests of an air-cooling hydrogen fuel cell hybrid electric scooter

机译:空冷氢燃料电池混合动力踏板车的实验测试

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摘要

A system integration of a novel proton exchange membrane fuel cell (PEMFC) -powered hybrid scooter was conducted to assess its performance. The fuel cell/lithium ion battery hybrid electric scooter system was composed of an air-cooled and self-humidified 2.3 kW PEMFC stack, a lithium ion battery, a low-pressure metal hydride canister set, a quick connector, a DC-DC converter, a hub motor, and an electronic control unit. PEMFCs have the benefit of a rapid start-up, low operating temperatures, and high power densities, making them ideal power sources for electric vehicles. Most recent fuel cell vehicle designs have used fuel cell hybrids architectures because of their enhanced fuel economy, superior performance at cold starts, ability to capture regenerative braking energy, and reduced system costs. Similarly, this study configured a lithium ion battery as the secondary energy source because of its rapid discharge capability. The PEMFC provided the scooter with a continuous electricity supply, and a 9.2 A h and 48.92-50.05 V lithium ion battery powered the scooter when a sudden burst of electric energy was required for stepping out, speeding up, or climbing. However, the hybrid system presented a unique challenge for the multiple energy sources to work together effectively. A modified ECE40 test and a USABC dynamic stress test were conducted to assess the performance of the hybrid scooter. Besides, in the dyno test, the maximum speed of the scooter was 53.2 km/h, and the distance between refueling was 63.5 km when the scooter's speed was fixed at 30 km/h. In the future, the main objectives are to extend the range, reduce the weight of the scooter, and increase the hydrogen use of the fuel cell.
机译:进行了新型质子交换膜燃料电池(PEMFC)驱动的混合动力踏板车的系统集成,以评估其性能。燃料电池/锂离子电池混合动力踏板车系统由风冷且自加湿的2.3 kW PEMFC电池组,锂离子电池,低压金属氢化物罐组,快速连接器,DC-DC转换器组成,轮毂电机和电子控制单元。 PEMFC具有快速启动,低工作温度和高功率密度的优势,使其成为电动汽车的理想电源。最新的燃料电池车辆设计已使用燃料电池混合动力架构,因为它们具有增强的燃料经济性,冷启动时的卓越性能,捕获再生制动能量的能力以及降低的系统成本。同样,本研究将锂离子电池配置为二次能源,因为其具有快速放电的能力。 PEMFC为踏板车提供了持续的电力供应,当需要突然的电能突发以加速,加速或攀爬时,踏板车可使用9.2 A h和48.92-50.05 V锂离子电池为踏板车供电。然而,混合动力系统为多种能源有效协同工作提出了独特的挑战。进行了改进的ECE40测试和USABC动态应力测试,以评估混合动力踏板车的性能。此外,在动力测试中,踏板车的最高速度为53.2 km / h,而当踏板车的速度固定为30 km / h时,加油之间的距离为63.5 km。将来,主要目标是扩大范围,减轻踏板车的重量并增加燃料电池的氢气使用量。

著录项

  • 来源
    《International journal of hydrogen energy》 |2013年第25期|11144-11148|共5页
  • 作者单位

    Department of Eletro-Optical and Energy Engineering, MingDao University, 369 Wen-Hua Road, Peetow, Chang-Hwa 52345, Taiwan;

    Department of Eletro-Optical and Energy Engineering, MingDao University, 369 Wen-Hua Road, Peetow, Chang-Hwa 52345, Taiwan;

    Department of Eletro-Optical and Energy Engineering, MingDao University, 369 Wen-Hua Road, Peetow, Chang-Hwa 52345, Taiwan;

    Department of Materials Science and Engineering, MingDao University, 369 Wen-Hua Road, Peetoiu,Chang-Hiua 52345, Taiwan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Proton exchange membrane fuel cell; Lithium ion battery; Hybrid electric scooter;

    机译:质子交换膜燃料电池;锂离子电池;混合动力踏板车;

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