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Influence of Broken Rotor Bars on Magnetic Quantities in Induction Machine

机译:断路器杆对感应机磁量的影响

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Broken rotor bars (BRB) is a typical type of failure in induction machines (IM), especially in drives where frequent transient operation is common. The BRB occurrence disturbs the air gap flux distribution giving rise to a sequence of interrelated phenomena. In this paper an analytical treatment of the electromagnetic quantities following fault development is presented. By means of superposition principle faulty rotor is modeled as a sum of two symmetrical rotors each of them producing their own MMF. However, the nature of two MMFs is quite different. The first rotor produces rotational MMF, whereas the second can only establish pulsating MMF. The latter can be modeled as a sum of two opposing rotational MMFs with half the original amplitude. Once re-combined with first rotor, the joint MMF can be described as a sum of direct MMF and oscillating MMF with typical fault frequency (1-2s)f_1. The oscillating MMF induces stator current component at the same frequency, which is known to be the basic indicator of BRBs in IM.
机译:破碎的转子杆(BRB)是一种典型的感应机器(IM)中的故障类型,尤其是在频繁瞬态操作常见的驱动器中。 BRB发生扰动气隙助焊剂分布,从而产生一系列相互关联的现象。本文介绍了断层后电磁量的分析处理。通过叠加原理,原理故障转子被建模为两种对称转子的总和,每个对称转子产生自己的MMF。然而,两个MMF的性质是完全不同的。第一转子产生旋转MMF,而第二转子只能建立脉动MMF。后者可以被建模为具有半个原始幅度的两个相对的旋转MMF的总和。一旦与第一转子重新结合,关节MMF可以被描述为具有典型故障频率(1-2S)F_1的直接MMF和振荡MMF的总和。振荡MMF以相同的频率引导定子电流分量,这已知是IM中BRB的基本指示。

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