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Modeling of polyphase brushless exciter behavior for failing diode operation

机译:二极管工作失败的多相无刷激励器行为建模

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This paper describes an original numerical method for modeling rectified polyphase salient pole synchronous machines which are commonly utilized for large turbo-generator brushless excitation systems. Simulating this kind of system under normal (and especially abnormal) operating conditions, would be of great help for designers and operators in order to improve their reliability and availability. The proposed method is especially convenient to represent actual machines without almost any restrictive assumption. It makes possible the evaluation of the stress of semiconductors when diode failures occur. Results show that good operation of the exciter with short-circuited diodes is almost impossible since its output voltage and current are noticeably weakened. However, its operation can be acceptably maintained if one or more diodes are open.
机译:本文介绍了一种原始的数值方法,用于建模整流型多相凸极同步电机,该方法通常用于大型涡轮发电机无刷励磁系统。在正常(尤其是异常)操作条件下对这种系统进行仿真,对于提高设计人员和操作人员的可靠性和可用性将大有帮助。所提出的方法在表示实际机器时特别方便,几乎没有任何限制性假设。当发生二极管故障时,可以评估半导体的应力。结果表明,由于二极管的输出电压和电流明显减弱,因此带有二极管短路的激励器几乎不可能正常工作。但是,如果一个或多个二极管断开,则其工作可以维持在可接受的水平。

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