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Analysis of the Steady State Stable Region of an Induction Machine Type of an AC Excited Synchronous Machine

机译:交流励磁同步电机的感应电机稳态稳定区分析

摘要

An analysis of the steady state stable region of an AC Excited Synchronous Machine (AESM), especially of that of an induction machine type, is presented in this paper. The AESM essentially has two unstable phenomena, one is the stepout, the other the hunting. The step-out can be judged by the steady state stability condition of a synchronous machine type ; on the other hand the hunting can be judged by that of an induction machine type. The steady state stable region of a synchronous machine type always exists at any slip within the range of 180 degrees of the extended internal displacement angle. However the stable region of an induction machine type is not as simple ; that is, it changes complexly for ships and ceases to exist beyond the range of certain slips (boundary slips). This paper derives these boundary slips and shows by numerical calculations that it is very effective to increase the secondary resistance of an AESM for the expansion of the steady state stable region of an induction machine type.
机译:本文对交流励磁同步电机(AESM)的稳态稳定区域进行了分析,特别是对感应电机类型的稳态区域。 AESM本质上有两种不稳定现象,一种是失步,另一种是波动。可以通过同步电机类型的稳态稳定性条件来判断失步;另一方面,可以通过感应机类型来判断振动。同步电机类型的稳态稳定区域始终存在于扩展内部位移角的180度范围内的任何滑动处。然而,感应电机类型的稳定区域并不是那么简单;也就是说,它对于船舶而言变化复杂,并且在某些滑移(边界滑移)范围之外不再存在。本文推导了这些边界滑移,并通过数值计算表明,对于扩展感应电机类型的稳态稳定区域,增加AESM的次级电阻非常有效。

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