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Winding Configurations for Five-Phase Synchronous Generators With Diode Rectifiers

机译:具有二极管整流器的五相同步发电机的绕组配置

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摘要

Wound-field synchronous generators are widely used in aircraft and marine electrical systems. As the electric power requirements increase, there is renewed interest in dc power networks, but the electrical source remains a synchronous generator. The combination of a diode rectifier with a wound-field multiphase generator reduces the voltage ripple on the dc network and increases fault tolerance, compared with an equivalent three-phase system. It also increases the options in terms of the winding design and configuration. This paper uses circuit modeling, including harmonics, informed by static finite-element results, to understand the wound-field generator performance for star and polygon connections of both short- and fully-pitched coils. Experimental results are used to validate the models. A polygon connection of short-pitched coils is shown to give good generator utilization for a healthy machine. However, careful design is required to prevent circulating harmonic currents. Under winding open-circuit faults, the polygon connection requires significant derating, making the star connection the preferred option.
机译:伤口场同步发电机广泛用​​于飞机和海洋电气系统。随着电力需求的增加,对直流电网的兴趣重新感兴趣,但电源仍然是同步发电机。与伤口场多相发生器的二极管整流器的组合降低了直流网络上的电压纹波,并与等效三相系统相比增加了容错。它还在绕组设计和配置方面增加了选项。本文采用电路建模,包括谐波,通过静态有限元结果通知,了解伤口场发生器性能,可用于短路和全倾斜线圈的星形和多边形连接。实验结果用于验证模型。显示了短倾斜线圈的多边形连接,用于为健康机提供良好的发电机利用。但是,需要仔细设计来防止循环谐波电流。在绕组开路故障下,多边形连接需要大量损失,使星形连接成为首选选项。

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