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An auxiliary power unit for advanced aircraft electric power systems

机译:用于高级飞机电力系统的辅助动力装置

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This article presents a comprehensive model and characterization of the Advanced Aircraft Electric Power Systems (AAEPS) with a hybrid Fuel Cell (FC)/battery Auxiliary Power Unit (APU). A model of fully controlled AAEPS for Boeing 767 is implemented in PSIM9 software environment. Also, a circuit model representation of the hybrid Proton Exchange Membrane (PEM) FC/battery APU is developed and integrated into the main power channel of a Variable Speed Constant Frequency (VSCF) aircraft electric power system at the main DC bus. The transient performance of the interconnected electric power system is studied under a large share of nonlinear loads. Moreover, the fuel cell based APU integrated model is extended to investigate the dynamic behavior of the AAEPS under various loading configurations. The entire system's stability is analyzed while different loading scenarios are taken into account. Several case studies are performed in order to measure the effectiveness and applicability of the proposed hybrid APU in an advanced aircraft operation. The time-domain analysis corresponding to each study is performed. Also, the obtained voltage and current data are validated using applicable aircraft electric power system's standards . Finally, a bench model is developed for the hybrid APU to verify the simulation results from PSIM9 model.
机译:本文介绍了具有混合燃料电池(FC)/电池辅助动力装置(APU)的高级飞机电力系统(AAEPS)的全面模型和特性。在PSIM9软件环境中实现了针对波音767的完全控制AAEPS模型。此外,还开发了混合质子交换膜(PEM)FC /电池APU的电路模型表示,并将其集成到主直流母线的变速恒频(VSCF)飞机电源系统的主电源通道中。在大量非线性负载下研究了互连电力系统的暂态性能。此外,扩展了基于燃料电池的APU集成模型,以研究AAEPS在各种负载配置下的动态行为。分析了整个系统的稳定性,同时考虑了不同的加载方案。为了测量建议的混合式APU在先进飞机运行中的有效性和适用性,进行了一些案例研究。进行与每个研究相对应的时域分析。同样,使用适用的飞机电力系统标准对获得的电压和电流数据进行验证。最后,为混合APU开发了一个基准模型,以验证PSIM9模型的仿真结果。

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