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Study of three phase induction motors with incipient rotor cage faults under different supply conditions

机译:不同供应条件下引入转子笼故障三相感应电动机的研究

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Majority of rotor related faults in three phase induction motors are due to broken bars and end rings. These faults occur primarily due to the thermal, magnetic, mechanical, environmental stresses that the rotor has to undergo during the routineusage. Faults involving several broken bars cause excessive vibration, noise and sparking during motor starting. Fabricated type rotors have more incidents of rotor bar and end ring breakage than cast rotors. On the other hand, cast rotors are moredifficult to repair once they fail. Once a bar breaks; the condition of the neighboring bars also deteriorates progressively due to increased stresses. To prevent such a cumulative destructive process, the problem should be detected early, that is, whenthe bars are beginning to crack. This condition can be visualized as continuous increase in rotor bar resistance which increases from its nominal value to infinity when the bar is fully broken. Any experimental study to diagnose broken bar faults iscostly as it causes irreversible damage to the rotor. Thus, a model based approach to simulate broken bar related faults at various degrees of severity is indeed essential. The present paper evaluates through simulation the line current spectrum of aninduction motor at the incipient stage of bar breakage. The model can also be extended to multiple, full blown broken bar case. The speed and torque ripples caused by broken bars can also be studied. The rules and laws generated through such simulationscan then be used in neural network based diagnostic tools. Results in case of complete broken bars are validated by finite element calculations. Experimental results with upto four bars partially broken with machine operating from balanced sinusoidal andinverter fed supply are presented. Simulation results showing that certain abnormal power supply conditions can produce broken bar like spectrum have also been included.
机译:大多数转子相关的故障在三相感应电动机上是由于骨折和端环断开。这些故障主要是由于转子在经济缺陷期间发生的热量,磁性,机械,环境应力。涉及几个断杆的故障导致电机启动过程中的振动过大,噪音和火花。制造的转子具有比铸造转子更多的转子杆和端部圈破损。另一方面,一旦失败,铸造转子是Moredifficigor来修理。一旦酒吧休息;由于压力增加,相邻条的状况也逐渐恶化。为了防止这种累积的破坏性过程,应尽早检测到问题,即,律师开始破裂。可以可视化该条件作为转子杆电阻的连续增加,从其标称值增加到无穷大,当杆完全破裂时。任何实验研究都诊断破碎的条形缺失,因为它导致转子不可逆转地损坏。因此,基于模型的方法来模拟各种严重程度的破碎条相关的故障确实必不可少。本文通过仿真在钢筋破损初期突出阶段的触发电机线电流谱来评估。该模型也可以延伸到多个完全吹的骨箱。也可以研究由骨折引起的速度和扭矩涟漪。通过这种模拟生成的规则和法律,然后在基于神经网络的基于神经网络的诊断工具中使用。结果通过有限元计算验证了完整损坏的条形。提出了用从平衡正弦波特和馈电供应供应的机器部分破碎的四个杆的实验结果。仿真结果表明,还包括一些异常电源条件可以产生破碎的棒材。

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