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First Approach for a Fault Tolerant Power Converter Interface for Multi-Stack PEM Fuel Cell Generator in Transportation Systems

机译:用于运输系统中多堆叠PEM燃料电池发生器的容错功率转换器接口的第一方法

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This paper presents a fault tolerant architecture for connecting PEM fuel cells inside an hybrid on-board power generation system. As a first approach, the problematic of fault tolerance for multi-stack PEM fuel cell power systems dedicated to battery-hybrid transportation systems will be considered from both sides which closely interact: the fuel cell generator in case of faulty working and the power converter interface. For the first case, the use of antiparallel by-pass diodes have proved to be a solution and are tested on series assembly of 2-cell (experimental validation) and 20-cell (simulation) PEM fuel cell stacks. For the second one, the technological choice of an interleaved multi-phase boost converter interface with backup strategies and fault-tolerance management will be detailed. One of the great issues of these converter architectures is also to give new possibilities for power management and coordination with the battery inside this hybrid transportation system.
机译:本文介绍了用于连接混合动力板内发电系统内的PEM燃料电池的容错架构。作为第一方法,从两侧都考虑专用于电池混合传送系统的多堆PEM燃料电池电力系统的故障容错问题:在故障工作和功率转换器接口的情况下,燃料电池发生器。对于第一种情况,已证明使用反平行副通过二极管是一种解决方案,并在2细胞(实验验证)和20个单元(模拟)PEM燃料电池堆中进行串联组件测试。对于第二个,将详细介绍具有备份策略和容错管理的交错多相升压转换器接口的技术选择。这些转换器架构的巨大问题之一也是在该混合输送系统内的电池提供电源管理和协调的新可能性。

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