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Hardware-in-the-Loop Testing of a Fuel Cell Aircraft Powerplant

机译:燃料电池飞机动力装置的在环测试

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This paper presents the experimental methods and test results of a hardware-in-the-loop simulation of the powerplant for a small-scale fuel-cell-powered unmanned aerial vehicle. In this study, the hardware associated with the powerplant, power train, energy storage, and control systems operates dynamically as a component within a realtime aircraft simulation routine. Control signals, electrical loads, and mechanical loads are applied to the hardware to emulate the conditions of operation of the unmanned aerial vehicle powerplant during flight. Experimental results from hardware-in-the-loop testing of the fuel cell power train are presented with uncertainty analysis and discussion. These results show new aspects of the performance of fuel cell unmanned aerial vehicle powerplants, including the powerplant performance during long-endurance missions, power train subsystem power consumption, and unmodeled fuel cell dynamics. A comparison of the measured powerplant performance to experimental results from the literature shows that the fuel cell powerplant can outperform advanced electrochemical energy storage and internal combustion powerplants at the scale of the hardware-in-the-loop aircraft.
机译:本文介绍了小型燃料电池供电的无人机动力装置在环仿真的实验方法和测试结果。在这项研究中,与动力装置,动力总成,能量存储和控制系统相关的硬件作为实时飞机仿真例程中的组件动态运行。将控制信号,电负载和机械负载应用于硬件,以模拟飞行期间无人机动力装置的运行条件。给出了燃料电池动力总成硬件在环测试的实验结果,并进行了不确定性分析和讨论。这些结果显示了燃料电池无人机飞行器动力装置性能的新方面,包括长期耐久飞行任务中的动力装置性能,动力总成子系统的功耗以及未建模的燃料电池动力学。将测得的动力装置性能与文献中的实验结果进行比较表明,燃料电池动力装置在硬件在环飞机的规模上可以胜过先进的电化学能量存储和内燃机动力装置。

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