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Enhancement of a High Speed De-Excitation System for Brushless Synchronous Machines by large blocking voltage semiconductors

机译:大阻断电压半导体增强了无刷同步电机的高速励磁系统

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摘要

One of the main disadvantage of the synchronous machines with brushless excitation is that the field winding is not accessible for the de-excitation. The de-excitation process is very slow as the field current flows through the rotating diodes which operate in freewheel mode. Therefore in case of an internal fault, despite the correct operation of the protection relays, the machine could have severe damages. A high-speed de-excitation system for these machines was developed. The de-excitation is achieved by inserting a resistance in the field circuit by a static switch semiconductor based, obtaining a dynamic response similar to that achieved in machines with static excitation. This paper presents the improvement in the de-excitation system in the second commercial 20 MVA hydro generator in operation. In this case, high blocking voltage semiconductor was used, making the dynamic response even better, than in the first hydro generator.
机译:具有无刷励磁的同步电机的主要缺点之一是励磁绕组不可用于去励磁。励磁过程非常缓慢,因为励磁电流流过以续流模式工作的旋转二极管。因此,在内部故障的情况下,尽管保护继电器正确运行,机器仍可能受到严重损坏。开发了用于这些机器的高速除磁系统。通过基于静态开关半导体在场电路中插入电阻来实现去激励,从而获得类似于在具有静态激励的电机中实现的动态响应。本文介绍了正在运行的第二台商用20 MVA水力发电机的励磁系统的改进。在这种情况下,使用了高阻断电压半导体,因此动态响应甚至比第一台水力发电机更好。

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