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A NEW MODEL FOR DOUBLE OUTPUT INDUCTION GENERATOR WITH TWO ROTOR CIRCUITS

机译:两转子电路双输出感应发电机的新模型

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A technique is presented and confirmed for developing the computational efficiency in simulating double output induction generators with two rotor circuits where stator transients are to be included. Iterative decomposition is used to separate the flux-Linkage equations into decoupled fast and slow subsystems, after which the model order of the fast subsystems is reduced by neglecting the heavily damped fast transients caused by the second rotor circuit using integral manifolds theory. The two decoupled subsystems along with the equation for the very slowly changing slip constitute a three time-scale model for the machine which resulted in increasing computational speed. Finally , the proposed method of reduced order in this paper is compared with the other conventional methods and it is shown that this method is better than the other methods regarding simulation accuracy and speed.
机译:提出并证实了一种技术,该技术可用于开发具有两个转子电路(其中包括定子瞬变)的双输出感应发电机的仿真计算效率。使用迭代分解将磁链方程分解为解耦的快速子系统和慢速子系统,然后通过使用积分流形理论忽略由第二个转子电路引起的高阻尼快速瞬变,从而降低了快速子系统的模型阶数。两个解耦的子系统以及非常缓慢变化的滑移的方程式构成了机器的三个时标模型,从而提高了计算速度。最后,将本文提出的降阶方法与其他常规方法进行了比较,结果表明该方法在仿真精度和速度上均优于其他方法。

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