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Wing Technique: A Novel Approach for the Detection of Stator Winding Inter-Turn Short Circuit and Open Circuit Faults in Three Phase Induction Motors

机译:翼技术:一种检测三相感应电动机定子绕组匝间短路和开路故障的新方法

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摘要

This paper presents a novel approach based on the loci of instantaneous symmetrical components called "Wing Shape" which requires the measurement of three input stator currents and voltages to diagnose interturn insulation faults in three phase induction motors operating under different loading conditions. In this methodology, the effect of unbalanced supply conditions, constructional imbalances and measurement errors are also investigated. The sizes of the wings determine the loading on the motor and the travel of the wings while their areas determine the degree of severity of the faults. This approach is also applied to detect open circuit faults or single phasing conditions in induction motors. In order to validate this method, experimental results are presented for a 5 hp squirrel cage induction motor. The proposed technique helps improve the reliability, efficiency, and safety of the motor system and industrial plant. It also allows maintenance to be performed in a more efficient manner, since the course of action can be determined based on the type and severity of the fault.
机译:本文提出了一种基于瞬时对称分量轨迹(称为“翼形”)的新颖方法,该方法需要测量三个输入定子电流和电压,以诊断在不同负载条件下运行的三相感应电动机的匝间绝缘故障。在这种方法中,还研究了供应条件不平衡,结构失衡和测量误差的影响。机翼的大小决定了电机的负载和机翼的行程,而机翼的面积决定了故障的严重程度。这种方法还适用于检测感应电动机中的开路故障或单相状况。为了验证该方法,给出了5 hp鼠笼式感应电动机的实验结果。所提出的技术有助于提高电动机系统和工厂的可靠性,效率和安全性。由于可以根据故障的类型和严重性确定操作过程,因此还可以以更有效的方式执行维护。

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