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Optimization of EMC management plan for BOP(Balance of Plant) of fuel cell electric vehicle(FCEV)

机译:燃料电池电动汽车(FCEV)BOP(工厂平衡)EMC管理计划的优化

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The electromagnetic characteristics of FCEVs(fuel cell electric vehicles) are much different from the existing combustion engine cars as well as hybrid, plug-in-hybrid, and pure electric vehicles due to the high voltage/current generated by a fuel cell stack which uses a compressed hydrogen gas reacted with oxygen. To operate fuel cell stack efficiently, BOP(Balance of Plant) is essential. BOP systems are used many not only for motors in water pump, air blower, and hydrogen recycling pump but also inverters for these motors. Since these systems or components are connected by high voltage cables, EMC (Electromagneti c compatibility) management plan for the BOP systems of FCEV is the most important element to prevent the possible electric functional safety errors. In this paper, a systematic approach in applying the EMC standard for FCEV system is studied. Firstly, the analysis procedure for CE(Conducted Emission) and RE (Radiated Emission) from BOP systems is established. Subsequently, theoretical basis for applying EMC standard to BOP system is described.
机译:FCEV(燃料电池电动汽车)的电磁特性与现有的内燃机汽车以及混合动力,插电式混合动力和纯电动汽车大不相同,这是由于使用燃料电池堆产生的高电压/电流压缩氢气与氧气反应。为了有效地运行燃料电池堆,必不可少的BOP(植物平衡)。 BOP系统不仅用于水泵,鼓风机和氢气回收泵中的电机,而且还用于这些电机的逆变器。由于这些系统或组件是通过高压电缆连接的,因此,FCEV BOP系统的EMC(兼容性)管理计划是防止可能发生的电气功能安全错误的最重要要素。本文研究了一种将EMC标准应用于FCEV系统的系统方法。首先,建立了防喷器系统的CE(传导排放)和RE(辐射排放)的分析程序。随后,描述了将EMC标准应用于防喷器系统的理论基础。

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