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Transient Modeling of Squirrel-Cage Induction Machine Considering Air-Gap Flux Saturation Harmonics

机译:考虑气隙磁通饱和谐波的鼠笼式感应电机的瞬态建模

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摘要

A transient model of a squirrel-cage induction machine, including air-gap flux saturation harmonics, is presented in this paper. The machine model is based on a flux model, where the winding magnetizing fluxes are directly calculated from the resultant air-gap magnetomotive force, avoiding the use of complicated inductance harmonics. The effects of the fundamental and third harmonic components of the air-gap flux are incorporated in the model by two saturation factors. Moreover, the saturation effects are incorporated in the machine''s torque equation, allowing the model to investigate the machine''s performance under any load condition. The machine parameters, including saturation data, are obtained via the conventional no-load and locked-rotor tests, with access to the stator neutral connection. The proposed model is validated by experimental results for a squirrel-cage machine and can be used to predict machine transient states.
机译:本文提出了一种鼠笼式感应电机的瞬态模型,其中包括气隙磁通饱和谐波。机器模型基于磁通量模型,在该模型中,绕组磁通量是直接从合成气隙磁通势中计算得出的,从而避免了使用复杂的电感谐波。气隙通量的基波和三次谐波分量的影响通过两个饱和因子合并到模型中。此外,将饱和效应纳入了电机的转矩方程式,从而使模型可以研究在任何负载条件下的电机性能。电机参数(包括饱和度数据)可通过常规的空载和转子堵转测试获得,并可以进入定子中性线连接。所提出的模型通过鼠笼式电机的实验结果进行了验证,可用于预测电机的瞬态状态。

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