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A direct borohydride-peroxide fuel cell-LiPO battery hybrid motorcycle prototype - Ⅱ

机译:直接氢硼过氧化物燃料电池-LiPO电池混合动力摩托车原型-Ⅱ

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In this study, a direct borohydride peroxide fuel cell (DBPFC)-LiPo battery hybrid motor-cycle, called HYBROTO, was developed. The hybrid system was designed using a 10-cell DBPFC stack with 120 W of maximum power as the main power source, a 12 LiPo battery pack with 6300 mAh and 65 C for energy storage and as auxiliary power source, and a brushless DC (BLDC) motor. In addition, a voltage-monitoring integrated circuit for fuel cells, a battery management unit, and a motor control circuit were developed to command the DBPFC, LiPo battery, and BLDC motor, respectively. The hybrid system was managed and synchronized by a main control unit (MCU) containing a synchronous bidirectional buck boost converter and a boost converter. For performance tests, the DBPFC battery system and BLDC motor were installed in an electric motorcycle body. Performance tests were carried out in the hybrid system under a constant load of 60 W. The hybrid system showed a satisfactory performance under the constant load with an efficiency of 67%. However, the MCU requires further improvement to provide more stable power output. The motorcycle prototype was tested at the 2016 International Symposium on Sustainable Aviation organized by the Sustainable Aviation Research Society. 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项研究中,开发了一种称为HYBROTO的直接过氧化氢硼氢燃料电池(DBPFC)-LiPo电池混合动力摩托车。混合动力系统的设计使用一个最大功率为120 W的10单元DBPFC电池组作为主要电源,一个具有6300 mAh和65 C的12 LiPo电池组作为能量存储和辅助电源以及一个无刷DC(BLDC) ) 发动机。另外,开发了用于燃料电池的电压监视集成电路,电池管理单元和电动机控制电路,以分别命令DBPFC,LiPo电池和BLDC电动机。混合系统由包含同步双向降压/升压转换器和升压转换器的主控制单元(MCU)进行管理和同步。为了进行性能测试,将DBPFC电池系统和BLDC电机安装在电动摩托车车身中。在60 W的恒定负载下的混合动力系统中进行了性能测试。混合动力系统在恒定负载下显示出令人满意的性能,效率为67%。但是,MCU需要进一步改进以提供更稳定的功率输出。该摩托车原型已在由可持续航空研究协会组织的2016年国际可持续航空研讨会上进行了测试。 2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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