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Multi-rates fuel cell emulation with spatial reduced real-time fuel cell modelling

机译:具有空间缩减的实时燃料电池建模的多速率燃料电池仿真

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This paper presents, a multi-physical fuel cell stack model. The stack model is divided into 3 sub-models describing the different physical domains: electrical, fluidic and thermal. The stacking method has been used to model the fuel cell stack from a single cell model. The proposed model has been validated against a 1.2 kW commercial fuel cell stack with excellent agreement between simulation and experimentation. Based on the simulation results, a novel model reduction method is proposed. The reduced model is suitable for real-time simulation purpose. Moreover, a real-time model based fuel cell emulator is introduced. The emulator has 3 real-time computation cores with different rates. The 3 computation cores are interconnected with a digital communication bus. A DC/DC buck converter is designed, in order to receive the model predicted stack power conditions and emulate the real fuel cell stack power output. The experimental test results show that such an emulator is suitable for fuel cell system Hardware-in-the-loop (HIL) applications.
机译:本文呈现多物理燃料电池堆模型。堆叠模型分为3个描述不同物理域的子模型:电气,流体和热。堆叠方法已被用于从单个电池模型模拟燃料电池堆。拟议的模型已经针对1.2千瓦的商业燃料电池堆进行验证,仿真与实验之间的一致性。基于仿真结果,提出了一种新型模型还原方法。降低的模型适用于实时仿真目的。此外,引入了基于实时模型的燃料电池仿真器。仿真器具有3个具有不同速率的实时计算核心。 3个计算核心用数字通信总线互连。设计DC / DC降压转换器,以便接收模型预测的堆栈电源条件,并模拟真正的燃料电池堆功率输出。实验测试结果表明,这种仿真器适用于燃料电池系统硬件载入的环(HIL)应用。

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