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Modeling of a steady-state VSCF aircraft electrical generator based on a matrix converter with high number of input phases

机译:基于具有大量输入相的矩阵转换器的稳态VSCF飞机发电机建模

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In aircraft power generation system, constant speed drive (CSD) and integrated drive generator (IDG) have play an important part to provide the constant frequency power supply to the aircraft electrical systems. However, these systems have their downsides, particularly they are heavy and being fully mechanical, has the tendency to fail completely if some of its gears and linkages break down. Other than that, aircraft engine rotates much lower than the 400 cycles-per-second required to produce the standard frequency of aircraft electrical system power supply. In this paper, a variable-speed, constant-frequency (VSCF) aircraft power generation system based on a high number input phases matrix converter is proposed. The system is than tested with a Boeing 777-200ER engine as the prime mover and the engine performance is based on a typical flight profile of the aircraft. The proposed aircraft power generation system constant frequency output is validated using modeling and simulation in Matlab/Simulink.
机译:在飞机发电系统中,恒速驱动器(CSD)和集成驱动发电机(IDG)在为飞机电气系统提供恒定频率电源方面起着重要作用。但是,这些系统有其缺点,特别是它们笨重且完全机械化,如果某些齿轮和连杆发生故障,则有完全失效的趋势。除此之外,飞机发动机的旋转速度远远低于产生飞机电气系统电源标准频率所需的每秒400个循环。本文提出了一种基于大量输入相矩阵变换器的变速恒频飞机发电系统。然后,该系统使用波音777-200ER发动机作为原动机进行了测试,并且发动机性能基于飞机的典型飞行曲线。在Matlab / Simulink中通过建模和仿真验证了拟议的飞机发电系统的恒定频率输出。

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