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Modelling and Simulation of Fuel Cell Dynamics for Electrical Energy Usage of Hercules Airplanes

机译:大力神飞机电能使用的燃料电池动力学建模与仿真

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摘要

Dynamics of proton exchange membrane fuel cells (PEMFC) with hydrogen storage system for generating part of Hercules airplanes electrical energy is presented. Feasibility of using fuel cell (FC) for this airplane is evaluated by means of simulations. Temperature change and dual layer capacity effect are considered in all simulations. Using a three-level 3-phase inverter, FC's output voltage is connected to the essential bus of the airplane. Moreover, it is possible to connect FC's output voltage to airplane DC bus alternatively. PID controller is presented to control flow of hydrogen and oxygen to FC and improve transient and steady state responses of the output voltage to load disturbances. FC's output voltage is regulated via an ultracapacitor. Simulations are carried out via MATLAB/SIMULINK and results show that the load tracking and output voltage regulation are acceptable. The proposed system utilizes an electrolyser to generate hydrogen and a tank for storage. Therefore, there is no need for batteries. Moreover, the generated oxygen could be used in other applications in airplane.
机译:提出了带有储氢系统的质子交换膜燃料电池(PEMFC)的动力学,用于产生大力神飞机的一部分电能。通过模拟评估了在飞机上使用燃料电池(FC)的可行性。在所有模拟中都考虑了温度变化和双层电容效应。使用三电平三相逆变器,FC的输出电压连接到飞机的基本总线。此外,可以将FC的输出电压交替连接到飞机的DC总线。提出了PID控制器来控制氢气和氧气流向FC的流量,并改善输出电压对负载扰动的瞬态和稳态响应。 FC的输出电压通过超级电容器调节。通过MATLAB / SIMULINK进行仿真,结果表明负载跟踪和输出电压调节是可以接受的。所提出的系统利用电解器产生氢气和用于存储的罐。因此,不需要电池。而且,所产生的氧气可用于飞机的其他应用中。

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