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A novel double-circuit-rotor balanced induction motor for improved slip-energy recovery drive performance. I. Modeling and simulation

机译:一种新颖的双回路转子平衡感应电动机,用于改善滑差能量恢复驱动性能。一,建模与仿真

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摘要

A new construction for the rotor windings of balanced wound-rotor induction motors employed in the slip energy recovery drives is proposed, in this paper, to reduce the time harmonics which are commonly generated in the machine. The proposed machine has a double-circuit in the rotor. One circuit is star connected while the other is delta connected. Each of these two circuits is connected to a diode-bridge rectifier to achieve a twelve-pulse operation characteristics. The main objective of this paper is to develop a new model which is capable of simulating the proposed machine, neglecting nonlinearities due to magnetic saturation, and its associated converters. Such a model is further complicated due to the presence of the two rotor circuits and their mutual interaction.
机译:本文提出了一种新的结构,用于在滑差能量回收驱动器中使用的平衡绕线转子感应电动机的转子绕组,以减少机器中常见的时间谐波。所提出的机器在转子中具有双回路。一个电路为星形连接,而另一电路为三角形连接。这两个电路中的每一个都连接到二极管桥式整流器,以实现十二脉冲工作特性。本文的主要目的是开发一种新模型,该模型能够模拟所提出的电机,而忽略了由于磁饱和引起的非线性及其相关的转换器。由于两个转子回路的存在及其相互影响,这种模型更加复杂。

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