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5th International Scientific Conference on Energy and Climate Change
Estimation of defects in induction machine using of current space vector locus astrit BARDHI myrteza BRANESHI ymer LUGA alfred PJETRI 11-12 October 2012, Athens Greece
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Scope of article The aim of this article is to present a method based on the analysis of space vector locus of the stator line currents of induction machine working under fault conditions to identify on line of stator and rotor winding faults in early stage
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Distribution of faults.
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Distribution of stator and rotor winding faults
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STATOR WINDING AND ROTOR BARS FAULTS IN INDUCTION MACHINE
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Stator winding failures
Stator winding failures occurs due: Thermal stresses Electrical stresses Mechanical stresses environmental stresses Combination of above stresses
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Type of stator winding faulty in IM
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Rotor bars damage of IM Rotor bars damage consist:
Cracked of rotor bars Cut of rotor bars Cut of rotor ring
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ANALYSIS OF IM IN NORMAL CONDITION
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IM working under normal condition
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IM working under normal condition
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IM working under normal condition
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Space vector of stator line currents working under normal condition
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ANALYSIS OF IM WITH BROKEN ROTOR BARS
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Effect of rotor bars damage at stator line currents
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Effect of rotor bars damage at stator line currents
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Effect of rotor bars damage at stator line currents
The resultant of FMM of rotor circuit in case of bar damage
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Effect of rotor bars damage at stator line current
The resultant of FMM of rotor circuit in case of bar damage
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Effect of rotor bars damage at stator line current
Angular speed of negative sequences of MMF rotate in opposite of rotor speed Ω2,2 = −sΩ1 + Ω= −sΩ1+(1 − s)Ω1 = (1 − 2s)Ω1 induce at stator winding a EMF with (1 − 2s)f1 frequency
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Effect of rotor bars damage at stator line current
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Effect of rotor bars damage at stator line current
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Effect of rotor bars damage at stator line current
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Effect of rotor bars damage at stator line current
The stator line currents in case of rotor bar damages
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Effect of rotor bars damage at stator line current
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Effect of rotor bars damage at stator line current
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Space vector locus of stator line currents
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WITH STATOR WINDINGS FAULTY
ANALYSIS OF IM WITH STATOR WINDINGS FAULTY
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Effect of inter-turn shorted of winding at stator line current
Normal condition Faulty conditions
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Effect of inter-turn shorted of winding at stator line currents
Reduce of MMF of stator phases (IW) MMF created by inter-turn shorted is oppossite with main MMF produce by the phase windings Reduce the active resistance of phase damages Magnetic couple betwen phases changes
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Effect of inter-turn shorted of winding at stator line currents
Reduce of MMF of stator phases (IW) MMF created by inter-turn shorted is oppossite with main MMF produce by the phase windings Reduce the active resistance of phase damages Magnetic couple betwen phases changes
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Effect of inter-turn shorted of winding at stator line currents
The stator line currents in case of inter-turn shorted isA(t) = I1msin(1t + f1) + I2msin(1t + f2) isB(t) = I1msin(1t + f1 − 1200) + I2msin(1t + f ) isA(t) = I1msin(1t + f1 − 2400) + I2msin(1t + f )
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Space vector locus of stator line currents in case of stator winding faults
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Space vector locus of stator line currents in case of stator winding faults
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EXPERIMENTAL RESULTS
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IM working under normal condition
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IM working under broken rotor bars at half rated power
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The modification of the stator windings
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IM working under faulty condition at rated power with 7.5% asymmetry
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IM working under faulty condition at rated power
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IM working under faulty condition at rated power
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Conclusions The space vector (SP) locus method can be used for monitoring without interfering on the motor regime. Induction machine faults can be detected at early stage of development. SP locus in case of the machine working under normal condition is a circle. SP locus of stator line currents in case of stator winding is represented by an ellipse. SP locus of stator line currents in case of broken rotor bars is a circle, but its width is thicker than in normal condition.
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Thank you
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